[1] | K. Sakurama, K. Kashima, T. Ikeda, N. Hayashi, K. Hoshino, M. Ogura, and C. Zhao, "System-Control-Based Approach to Car-Sharing Systems," in Advanced Mathematical Science for Mobility Society, Springer Singapore, 2024, pp. 127-171. |
[1] | C. Zhao, B. Zhu, M. Ogura, and J. Lam, "Probability rate optimization of positive Markov jump linear systems via DC programming," Asian Journal of Control (accepted for publication), 2024 |
[2] | 多川純平, 小蔵正輝, 杉本謙二, "Sparse Activity-Drivenネットワークにおける平均合意の収束性能解析," 計測自動制御学会論文集 (採録決定), 2024. |
[3] | W. Imahayashi, Y. Tsunoda, and M. Ogura, "Route design in sheepdog system-traveling salesman problem formulation and evolutionary computation solution-," Advanced Robotics (accepted for publication), 2024. |
[4] | J. J. R. Liu, M. Ogura, and J. Lam, "Learning-based stabilization of Markov jump linear systems," Neurocomputing (accepted for publication), 2024. |
[5] | J. Aizawa, M. Ogura, M. Shimono, and N. Wakamiya, "Firing pattern manipulation in neuronal networks by deep unfolding-based MPC," IET Control Theory & Applications (accepted for publication), 2024. |
[6] | T. Hirai, R. Oda, and N. Wakamiya, "Power-Level-Design-Aware Scalable Framework for Throughput Analysis of GF-NOMA in mMTC," IEEE Internet of Things Journal (early access), May 2024. |
[7] | T. Hirai, Y. Ueda, and N. Wakamiya, "Stochastic Geometry-Based Throughput Analysis of User-Specific Power-Level-Constrained GF-NOMA," IEEE Internet of Things Journal (early access), May 2024. |
[1] | R. Oda, T, Hirai, and N. Wakamiya, "Energy-efficient path-loss-based self-organized power level selection for GF-NOMA in mMTC," IEEE ICCE 2024, 2024. |
[2] | R. Oda, T, Hirai, S. Shioda, and N. Wakamiya, "Throughput evaluation of multi-cell power-domain GF-NOMA for mMTC," KJCCS 2024, 2024. |
[3] | T. Fuchikami, T. Hirai, and N. Wakamiya, "Spatial Performance Analysis of V2X with Sidelink NOMA with Multiple Interfering Vehicles," IEEE ICCE-TW 2024, Jul 2024. |
[4] | Y. Ueda, T. Hirai, and N. Wakamiya, "Throughput Maximization in Grant-Free Power-Domain NOMA for 3D Distributed Users by Stochastic Geometry," IEEE VTC2024-Fall, Oct 2024. |
[5] | M. Kozaki, T. Hirai, and N. Wakamiya, "Trajectory Optimization for Multiple Aerial Base Stations for Spatiotemporal Traffic Demand Changes," IEEE GCCE 2024, Nov 2024. |
[1] | 上田悠太, 小田怜, 平井健士, 若宮直紀, "ユーザが3次元空間に分布する環境でのGF-NOMAにおける電力レベル選択確率の最適化", 信学技報, vol. 123, no. 345, SeMI2023-66, pp. 88-93, 2024年1月. |
[2] | 小崎満稀, 平井健士, 小田怜, 若宮直紀, "トラヒックの時空間変動に対応する複数ABSの軌道最適化" , 信学技報, vol. 123, no. 345, SeMI2023-68, pp. 100-105, 2024年1月. |
[3] | 清水聡真, 平井健士, 若宮直紀, "U2U通信の信頼性を向上するための飛行高度に応じた送信電力の最適化", 信学技報, vol. 123, no. 345, SeMI2023-69, pp. 106-111, 2024年1月. |
[4] | 渕上智貴, 平井健士, 小田怜, 若宮直紀, "NOMAを用いたAutonomous Sidelink Cellular V2Xにおけるパケット受信率の空間特性の解析", 信学技報, vol. 123, no. 345, SeMI2023-68, pp.34-38, 2024年1月. |
[5] | 清水聡真, 平井健士, 若宮直紀, "高度毎にUAVの密度が異なる環境におけるU2Uの信頼性向上のための飛行高度に対する送信電力の解析と最適化", 信学技報, vol. 123, no. 398, IN2023-73, pp. 47-52, 2024年2月. |
[6] | 榎本直紀, 若宮直紀, "生物種間共生に着想を得たLoRaWANネットワーク間の公平性向上手法", 信学技報, vol. 123, no. 397, NS2023-204, pp. 190-195, 2024年2月. |
[6] | A. Li, R. Oshima, Y. Murakami, M. Ogura, and N. Wakamiya, “Divide-and-rule strategies for shepherding swarms with inherent noise,” The 11th SICE Multi-Symposium on Control Systems, pp. 1A7-2, 2024. |
[7] | 渕上智貴,平井健士,上田悠太,若宮直紀, "NOMAを用いた協調送信型Sidelink V2Xにおけるパケット受信率の空間的特性の解析", 信学技報, vol. 124, no. 109, SeMI2024-12, pp. 1-6, 2024年7月. |
[8] | Y. Ueda, T.Hirai, and N. Wakamiya, "Optimizing Power Level Selection Strategy in Grant-Free Power-Domain NOMA for 3D Distributed Users by Stochastic Geometry" SeMI Vietnam Workshop, Oct 2024. |
[9] | T. Fuchikami, T.Hirai, and N. Wakamiya, "Spatial Performance Analysis of NOMA-V2X Broadcasting" SeMI Vietnam Workshop, Oct 2024. |
[1] | 相澤純平,小蔵正輝,岸田昌子,若宮直紀, "時相深層展開を用いたモデル予測制御の多重振り子系に対する有効性の検証," システム制御情報学会論文誌, vol. 36, no. 4, Apr. 2023. |
[2] | 和田弘匡, 小蔵正輝, 岸田昌子, 若宮直紀, “深層展開を用いた静的出力フィードバック安定化における ハイパーパラメータの考察,” 計測自動制御学会論文集, vol. 59, no. 7, Jul. 2023. [ DOI ] |
[3] | M. Ogura and N. Wakamiya, “Reduced-order model predictive control of a fish schooling model,” Nonlinear Analysis: Hybrid Systems, vol. 49, p. 101342, Aug. 2023. [ DOI | arXiv | http ] |
[4] | M. Ogura and C. F. Martin, “Mean escape time of switched Riccati differential equations,” Journal of the Franklin Institute, vol. 360, no. 10, pp. 6827-6845, Jul. 2023. |
[5] | C. Zhao, B. Zhu, M. Ogura, and J. Lam, “Parametrized synthesis of discrete-time positive linear systems: a geometric programming perspective,” IEEE Control Systems Letters (accepted for publication), 2023. |
International Conference (peer-reviewed) |
[1] | A. Fujioka, M. Ogura, and N. Wakamiya, “Shepherding heterogeneous flocks: overview and prospect,” in 22nd IFAC World Congress (accepted), 2023. [ arXiv ] |
[2] | C. Zhao, X. Gong, Y. Ebihara, and M. Ogura, “Impulse-to-peak optimization of positive linear systems via DC drogramming,” in 22nd IFAC World Congress (accepted), 2023. |
[3] | Y. Deng, A. Li, M. Ogura, and N. Wakamiya, “Collision-free shepherding control of a single target within a swarm,” in 2023 IEEE International Conference on Systems, Man, and Cybernetics (accepted), 2023. |
[4] | A. Fujioka, M. Ogura, N. Wakamiya, “Proposal and Evaluation of Pursuit Formations based on Cyclic Pursuit Dynamics,” in 2023 International Symposium on Nonlinear Theory and its Applications (accepted), 2023. |
[5] | M. Ogura and V. M. Preciado, “Asynchronous temporal interactions promote disparity in networks,” in 2023 International Symposium on Nonlinear Theory and its Applications (accepted), 2023. |
[6] | Y. Ichimura, S. Shioda, T. Hirai, "Performance Analysis of NOMA-Based Slotted ALOHA for Massive Machine Type Communications," IEEE SmartGridComm 2023, Oct. 2023. |
[7] | Y. Ichimura, S. Shioda, T. Hirai, "Modeling and Performance Analysis of Slotted ALOHA with Interference Cancellation for mMTC," ACM MSWiM 2023, Oct. 2023. |
[8] | T. Hirai, T. Izumi, N. Wakamiya, "Power-Collision-Based 2-Shot Grant-Free NOMA with Cross-Slot SIC for mMTC," IEEE GLOBECOM 2023, Dec. 2023. |
[1] | 相澤純平, 小蔵正輝, 下野昌宣, 若宮直紀, “時相深層展開を用いたMPCによるニューロンネットワークのモジュール発火制御,” 第66回自動制御連合講演会, 2023. |
[2] | 小蔵正輝 and 若宮直紀, “最遠個体追跡法の解析,” 第67回システム制御情報学会研究発表講演会, pp. 211-5, 2023. |
[3] | A. Li, M. Ogura, and N. Wakamiya, “Evaluation of bearing-only shepherding algorithm on different types of flocks,” 第67回システム制御情報学会研究発表講演会, pp. 251-3, 2023. |
[4] | 藤岡杏奈, 小蔵正輝, 若宮直紀, “循環的追跡法に基づく自律分散型フォーメーション手法の提案と評価,” システム数理と応用研究会, 2023. |
[5] | 小蔵正輝, “Moment closureを用いたネットワーク化SISモデルの解析,” 線形代数的グラフ理論とその応用, Sep. 2023. |
[6] | 小蔵正輝, “群制御とshepherding problem,” 第17回数理モデリング研究会, 2023. |
[7] | M. Ogura, “Enhancing control system design through deep unfolding: A systematic approach,” University of Hawaii at Manoa, Oct. 2023. |
[9] | Jumpei Aizawa, Masaki Ogura, Masanori Shimono and Naoki Wakamiya, "Manipulation of Neuronal Network Firing Patterns using Temporal Deep Unfolding-based MPC," APSIPA ASC 2023, 2023. |
[10] | 上田悠太, 平井健士, "3次元空間に分布するユーザのためのGF NOMA における電力レベル選択確率の解析", 学生によるモビリティとネットワークの技術シンポジウム, 2023年10月. |
[11] | 清水聡真, 平井健士, "U2U通信の信頼性を向上させるための飛行高度に対する送信電力の解析", 学生によるモビリティとネットワークの技術シンポジウム, 2023年10月. |
[12] | 渕上智貴, 平井健士, "NOMAを用いた車車間通信における複数ユーザの同時送信時のパケット受信率の空間特性", 学生によるモビリティとネットワークの技術シンポジウム, 2023年10月. |
[13] | 上田悠太, 平井健士, "3次元空間に分布するユーザのためのGF-NOMAにおける電力レベル選択確率の解析", Massive Connect IoT時代の無線通信システムとハードウェアの統合設計研究会, 2023年11月. |
[14] | 小崎満稀, 平井健士, "異種の通信要求を持つユーザ群のスループットを最大化させるための複数ABSの配置", Massive Connect IoT時代の無線通信システムとハードウェアの統合設計研究会, 2023年11月. |
[15] | 清水聡真, 平井健士, "U2U通信の信頼性を向上させるための飛行高度に対する送信電力の解析", Massive Connect IoT時代の無線通信システムとハードウェアの統合設計研究会, 2023年11月. |
[16] | 渕上智貴, 平井健士, "NOMAを用いたV2X通信における複数ユーザの同時送信時のパケット受信率の空間特性", Massive Connect IoT時代の無線通信システムとハードウェアの統合設計研究会, 2023年11月. |
[16] | 永井陸斗, 小蔵正輝, 小槻 峻司, 若宮直紀, "Control Simulation Experimentにおける制御方策のモデル予測制御との比較を通じた有効性評価,"システム数理と応用研究会, 2023. |
[1] | M. Kumazaki, M. Ogura, and T. Tachibana, “Dynamic service chain construction based on model predictive control in NFV environments,” IEICE Transactions on Communications, vol. E105-B, no. 4, Apr. 2022. |
[2] | M. Nagahara, M. Ogura, and Y. Yamamoto, “Iterative greedy LMI for sparse control,” IEEE Control Systems Letters, vol. 6, pp. 986-991, Jun. 2022. |
[3] | A. Fujioka, M. Ogura, N. Wakamiya, "Shepherding algorithm for heterogeneous flock with model-based discrimination," Advanced Robotics, vol.37, pp. 99-114, Sep. 2022. |
[4] | B. Zhu, J. Lam, and M. Ogura, “Log-log convexity of an optimal control problem for positive linear systems,” Automatica, vol. 146, p. 110553, Dec. 2022. |
[5] |
X. Gong, M. Ogura, J. Shen, T. Huang, and Y. Cui, “Optimal epidemics policy seeking on networks of networks under malicious attacks by geometric programming,” to appear in IEEE Transactions on Systems, Man, and Cybernetics: Systems, Jan. 2023. |
[6] | C. Zhao, K. Sakurama, and M. Ogura, “Optimization of buffer networks via DC programming,” IEEE Transactions on Circuits and Systems II: Express Briefs, vol. 70, no. 2, pp. 606-610, Feb. 2023. |
[7] | A. Li, M. Ogura, and N. Wakamiya, “Communication-free shepherding navigation with multiple steering agents,” Frontiers in Control Engineering, vol. 4, 2023. |
[1] | A. Fujioka, M. Ogura, N. Wakamiya, "Shepherding Algorithm Based on Variant Agent Detection for Heterogeneous Flock," in 2022 SICE Annual Conference, Sep. 2022. |
[2] |
A. Li, M. Ogura, and N. Wakamiya, “Proposal of farthest-agent targeting algorithm with indirect chasing,” in 2022 SICE Annual Conference, pp. 92-94, Sep. 2022. |
[3] |
T Hirai, N Wakamiya, T Murase “NOMA-dependent Low-Powered Retransmission in Sensing-based SPS for Cellular-V2X Mode 4,” IEEE VTC2022-Fall, pp. 1-7, Sep. 2022. |
[4] |
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[5] |
N. Hirata, N. Wakamiya, "Investigation of metrics for readout-independent evaluation of the functional robustness of liquid state machines", 2022 International Symposium on Nonlinear Theory and Its Applications (NOLTA2022), Dec. 2022. |
[6] | T Hirai, R Oda, N Wakamiya, “Power Level Design-aware Throughput Analysis of Grant-Free Power-Domain NOMA in mMTC,” IEEE GLOBECOM 2022, pp. 105-110, Dec. 2022. |
[7] |
T Hirai, T Kimura, N Wakamiya, “Spatial Performance Analysis of Autonomous Sidelink Cellular-V2X with NOMA,” IEEE GLOBECOM 2022, pp. 1205-1210, Dec. 2022. |
[8] | A. Li, M. Ogura, N. Wakamiya, "Proposal of a bearing-only shepherding algorithm with limited sensing capabilities," in AROB-ISBC-SWARM 2023, pp. GS34-1, Jan. 2023. |
[9] | T. Nanno, K. Leibnitz, F. Peper, and N. Wakamiya, "Identifying the principal electrodes in forearm surface EMG experiments via regularized neural networks and PCA," in AROB-ISBC-SWARM 2023, pp. GS32-4, Jan. 2023. |
[10] | S Kawakami, N Wakamiya, "Analysis of influence of wireless communication on dynamics of neural networks," in 2023 RISP International Workshop on Nonlinear Circuits, Communications and Signal Processing (RISP NCSP 2023), pp. 321-324, Mar. 2023. |
[11] | J. Aizawa, M. Ogura, M. Shimono, N. Wakamiya, "Temporal deep unfolding-based MPC for controlling firing patterns of neuronal network," in 2023 RISP International Workshop on Nonlinear Circuits, Communications and Signal Processing (RISP NCSP 2023), Mar. 2023. |
[1] |
平井健士, "インフラレスセルラV2Xのための非直交多元接続," 信学技報, vol. 122, no. 48, IN2022-8, pp. 38-42, 2022年5月. |
[2] | 小蔵正輝, “深層展開を用いた汎用性の高いシステム制御技術の開発,” 電子情報通信学会コミュニケーションシステム研究会, May 2022. |
[3] | 相澤純平, 小蔵正輝, 岸田昌子, 若宮直紀, "時相深層展開を用いたモデル予測制御の多重振り子系に対する有効性の検証," 第66回システム制御情報学会研究発表講演会, May 2022. |
[4] | 小蔵正輝, “深層展開を用いたモデルベース制御系設計,” 第66回システム制御情報学会研究発表講演会, May 2022. |
[5] | 中村敦, 本多顕太郞, ペパーフェルディナンド, ライプニッツ賢治, 若宮直紀, 長谷川幹雄, "高密度IoT向けCSS-APCMA方式のGNU Radio/USRPを用いた性能評価," 電子情報通信学会複雑コミュニケーションサイエンス研究会, 信学技報, vol. 122, no. 66, CCS2022-21, pp. 106-110, June 2022. |
[6] | Masaki Ogura, "When deep unfolding meets control engineering", 37th International Technical Conference on Circuits/Systems, Computers and Communications, Tutorial Talk, Jul. 2022 |
[7] | Naoki Wakamiya, "B-WSN: brain-morphic wireless sensor network and physical reservoir computing," The 18th International Conference on Multimedia Information Technology and Applications (MITA 2022), Keynote speech, July 2022. |
[8] | Naoki Wakamiya, "Neural computing in wireless IoT network," The 5th World Symposium on Communication Engineering (WSCE 2022), Keynote speech, Sep. 2022. |
[9] |
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[10] |
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[11] |
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[12] | Y. Deng, M. Ogura, A. Li, and N. Wakamiya, “Shepherding algorithm for separating a single agent from swarm,” 第35回自律分散システム・シンポジウム, pp. 1C1-4, 2023. 萌芽セッション. |
[13] |
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[14] | 小田怜, 平井健士, 塩田茂雄, 若宮直紀, "mMTCのためのGF-NOMAにおけるセル間干渉を考慮したスループット評価," 電子情報通信学会センサネットワークとモバイルインテリジェンス研究会, 信学技報, , vol. 122, no. 341, SeMI2022-71, pp. 3-8, 2023年1月. |
[15] | M. Ogura, “Perspectives on Artificial Intelligence,” 2nd Japanese-Canadian Frontiers of Science (JCFoS) Symposium, Invited Talk, Mar. 2023. [ http ] |
[16] | 榎本直紀, 若宮直紀, "LoRaWANネットワークにおける異種生物共生に着想を得たGW間の公平性向上手法," 信学技報, vol. 122, no. 453, CCS2022-84, pp. 117-122, 2023. |
[17] | 小田怜, 平井健士, 若宮直紀, "mMTCのためのGF-NOMAにおける自己組織型電力選択の送信電力制限を考慮したスループット評価", 信学技報, vol. 122, no. 453, CCS2022-76, pp. 75-80, 2023. |
[1] | A. Li, "Proposal and Evaluation of Shepherding Navigation by Multiple Steering Agents with Relative Measurements" Master thesis, Osaka University, February, 2023. |
[2] | 河上将大, "無線通信が無線スパイキングニューラルネットワークの ダイナミクスに与える影響の分析" 修士論文, 大阪大学, February, 2023. |
[3] | 和田弘匡, "深層展開を用いた 静的フィードバック安定化における ハイパーパラメータの検討" 修士論文, 大阪大学, February, 2023. |
[1] | 佐藤文哉, "ノイズ下における神経細胞発火ダイナミクスの Neural SDEを用いた制御" 特別研究報告, 大阪大学, February, 2023. |
[2] | 土肥恒貴, "異種の通信要求を持つユーザ群のための ドローン基地局配置によるスループット向上" 特別研究報告, 大阪大学, February, 2023. |
[3] | 榎本直紀, "LoRaWANネットワークにおける異種生物共生に着想を 得たGW間の公平性向上手法" 特別研究報告, 大阪大学, February, 2023. |
[1] | F. Peper, K. Leibnitz, C. Tanaka, K. Honda, M. Hasegawa, K. Theofilis, A. Li, and N. Wakamiya, "High-Density Resource-Restricted Pulse-Based IoT Networks," IEEE Transactions on Green Communications and Networking, Jun. 2021(Early Access). |
[2] | M. Nagahara, B. Krishnamachari, M. Ogura, A. Ortega, Y. Tanaka, Y. Ushifusa, and T. W. Valente, "Control, intervention, and behavioral economics over human social networks against COVID-19," Advanced Robotics, vol. 35, no. 11, pp. 733-739, Jul. 2021. |
[3] | K. Sugimoto, T. Aihara, M. Ogura, and K. Hanada, "Gain scheduling for sampled-data state estimation over lossy networks," Transactions of the Institute of Systems, Control and Infoation Engineers, vol. 34, no. 11, pp. 287-293, Oct. 2021. |
[4] | C. Tanaka, K. Honda, A. Li, F. Peper, K. Leibnitz, K. Theofilis, N. Wakamiya, and M. Hasegawa, "Performance evaluation of pulse-based multiplexing protocol implemented on massive IoT devices," Nonlinear Theory and Its Applications, IEICE, vol. 12, no. 4, pp. 726-737, Oct. 2021. |
[5] | K. Hashimoto, Y. Onoue, M. Ogura, and T. Ushio, "Event-triggered control for mitigating SIS spreading processes," Annual Reviews in Control, vol. 52, pp. 479--494, Dec. 2021. |
[6] | T. Kimura, and M. Ogura, "Distributed 3D deployment of aerial base stations for on-demand communication," IEEE Transactions on Wireless Communications, vol. 20, no. 12, pp. 7728--7742, Dec. 2021. |
[7] | M. Kishida, and M. Ogura, "Temporal deep unfolding for constrained nonlinear stochastic optimal controls," IET Control Theory & Applications, vol. 16, no. 2, pp. 139--150, Jan. 2022. |
[8] | R.Himo, M.Ogura, and N.Wakamiya, "Iterative algorithm for shepherding unresponsive sheep," Mathematical Biosciences and Engineering, vol. 19, no. 4, pp. 3509--3525, Jan. 2022. |
[1] | M. Kishida, and M. Ogura, "Deep unfolding for nonlinear maximum hands-off control," in Proceedings of SICE Annual Conference 2021, pp. 1007--1010, Sep. 2021. |
[2] | K. Yamamoto, N. Wakamiya, R. Nakano, and R. Fujiwara, "Model-based anomaly detection in response delay in communication through LTE network," in Proceedings of 2021 22nd Asia-Pacific Network Operations and Management Symposium, Sep. 2021. |
[3] | K. Honda, F. Peper, A. Nakamura, A. Li, Y. Ito, K. Leibnitz, K. Theofilis, N. Wakamiya, and M. Hasegawa, "Design and Implementation of Pulse-Based Protocol with Chirp Spread Spectrum for Massive IoT," in Proceedings of 20th International Symposium on Communications and Infoation Technologies (ISCIT 2021), Oct. 2021. |
[4] | K. Leibnitz, F. Peper, K. Theofilis, M. Hasegawa, and N. Wakamiya, "Evaluating Multiple-Access Protocols: Asynchronous Pulse Coding vs. Carrier-Sense with Collision Avoidance," in Proceedings of The Fourth International Workshop on Mobile Ubiquitous Systems, Infrastructures, Communications and AppLications (MUSICAL), Nov. 2021. |
[5] | N. Wakamiya, K. Leibnitz, F. Peper, and M. Hasegawa, "Evaluation and Optimization of Asynchronous Pulse Code Multiple Access Scheme," in Proceedings of The 2021 Nonlinear Science Workshop, Dec. 2021. |
[6] | M. Ogura, and N. Wakamiya, "Model predictive control of fish schooling model with reduced-order prediction model," in Proceedings of 60th IEEE Conference on Decision and Control, pp. 4115--4120, Dec. 2021. |
[1] | R. Liu, M. Ogura, E. F. D. Reis, and N. Masuda, "Modeling epidemic spreading in Markovian temporal networks with different degrees of concurrency," Fourth Northeast Regional Conference on Complex Systems, Apr. 2021. |
[2] | N. Masuda, V. Preciado, and M. Ogura, "Analysis of the susceptible-infected-susceptible model in finite networks using the non-backtracking matrix," 2021 SIAM Conference on Applied Linear Algebra, May. 2021. |
[3] | R. Himo, M. Ogura, and N. Wakamiya, "Shepherding algorithm for agents with heterogeneous sensitivities," in Proceedings of The 4th International Symposium on Swa Behavior and Bio-Inspired Robotics (SWARM2021), Jun. 2021. |
[4] | S. Kitaura, and N. Wakamiya, "Movement Control of Cyborg Insects for Fast Exploration of a Collapsed Building," in Proceedings of The 4th International Symposium on Swa Behavior and Bio-Inspired Robotics (SWARM2021), Jun. 2021. |
[5] | R. Liu, M. Ogura, E. F. D. Reis, and N. Masuda, "Modeling effects of concurrency on epidemic spreading in Markovian temporal networks," Networks 2021: A Joint Sunbelt and NetSci Conference, Jun. 2021. |
[6] | 岸田昌子, 小蔵正輝, "時相深層展開の提案とその非線形制御への適用," 第24回情報論的学習理論ワークショップ, Nov. 2021. |
[7] | 和田弘匡, 小蔵正輝, 岸田昌子, 若宮直紀, "深層展開を用いた静的出力フィードバック安定化問題におけるハイパーパラメータの考察," 第64回自動制御連合講演会, pp. 1F2--5, Nov. 2021. |
[8] | 小蔵正輝, "深層展開と制御工学が出会うとき," vol. 121, no. 328, SIP2021-53, pp. 95--95, Jan. 2022. |
[9] | 小田怜, 平井健士, 若宮直紀, "mMTCにおけるグラントフリー電力軸非直交多元接続の消費電力低減のための自己組織的電力制御," 信学技報, vol. 121, no. 301, NS2021-102, pp. 29--34, Dec. 2021. |
[10] | A. Li, M. Ogura, and N. Wakamiya, "A Distributed Approach for Shepherding with Multiple Steering Agents," 第34回自律分散システム・シンポジウム, Jan. 2022. 萌芽セッション, |
[11] | 小田怜, 平井健士, 若宮直紀, "mMTCにおけるGF-NOMAのための自己組織型電力制御の参照信号伝達範囲に対するロバスト性評価," 信学技報, vol. 121, no. 395, CS2022-102, pp. 141--146, Mar. 2022. |
[12] | 藤岡杏奈, 小蔵正輝, 若宮直紀, "異種エージェントの混在した群れに対するモデルベースshepherding制御アルゴリズムの提案と評価," 第9回制御部門マルチシンポジウム, Mar. 2022. |
[13] | 小蔵正輝, "非バックトラックを活用した複雑ネットワーク解析," 2022年電子情報通信学会総合大会, チュートリアルセッション, Mar. 2022. |
[14] | R. Liu, M. Ogura, E. F. D. Reis, and N. Masuda, “Impacts of concurrency on epidemic spreading in Markovian temporal networks,” Fifth Northeast Regional Conference on Complex Systems, pp. 1A-2, Mar. 2022. |
[1] | 永原正章, and 小蔵正輝, "パンデミックとシステム・制御・ネットワーク理論," 計測と制御, vol. 60, no. 9, pp. 641--646, 2021. |
[2] | 小蔵正輝, "複雑ネットワーク解析における非バックトラック," 電子情報通信学会誌, vol. 105, no. 1, pp. 27--32, Jan. 2022. |
[1] | K. Yamamoto, "Modeling of response in delay in communication through LTE network and its application to anomaly detection," Master thesis, Osaka University, February, 2022. |
[1] | 小田 怜, "mMTCにおけるグラントフリー電力軸非直交多元接続の消費電力低減のための自己組織型電力制御の提案と評価," 特別研究報告, 大阪大学, February, 2022. |
[2] | 相澤 純平, "時相深層展開を用いたモデル予測制御のマルチリンク系に対する有効性の検証," 特別研究報告, 大阪大学, February, 2022. |
[3] | 藤岡 杏奈, "混入エージェントを検出する shepherding アルゴリズムの提案と評価," 特別研究報告, 大阪大学, February, 2022. |
[4] | 平田 直輝, "リキッドステートマシンの機能的ロバスト性の評価のための距離関数の検討," 特別研究報告, 大阪大学, February, 2022. |
[5] | 平野 空暉, "脳型無線センサネットワークにおける温度分布推定手法の提案と評価," 特別研究報告, 大阪大学, February, 2022. |
[6] | 林 大誠, "アリの採餌行動に着想を得たマルチエージェントシステムの外乱に対するロバスト性の解析," 特別研究報告, 大阪大学, February, 2022. |
[1] | 八木聖太,小蔵正輝,岸田昌子,木村達明,林和則, "Geometric programによる送信電力制御アルゴリズムのロバスト安定化," 電子情報通信学会論文誌B, vol. J103-B, no. 12, 2020. |
[2] | C. Zhao, M. Ogura, M. Kishida, and A. Yassine, "Optimal resource allocation for dynamic product development process via convex optimization," Research in Engineering Design (accepted for publication), 2020. |
[3] | M. Kishida, M. Ogura, Y. Yoshida, and T. Wadayama, "Deep learning-based average consensus," IEEE Access, vol. 8, pp. 142404 -- 142412, August, 2020. |
[4] | X. Chen, M. Ogura, and V. M. Preciado, "Bounds on the spectral radius of digraphs from motif counts," SIAM Journal on Matrix Analysis and Applications, vol. 41, no. 2, pp. 525--553, April, 2020. |
[5] | W. Mei, C. Zhao, M. Ogura, and K. Sugimoto, "Mixed $H_2/H_infty$ control of delayed Markov jump linear systems," IET Control Theory & Applications, vol. 14, no. 15, pp. 2076--2083, oct, 2020. |
[6] | C. Zhao, M. Ogura, and K. Sugimoto, "Stability optimization of positive semi-Markov jump linear systems via convex optimization," SICE Journal of Control, Measurement, and System Integration, vol. 13, no. 5, pp. 233--239, September, 2020. |
[7] | X. Chen, M. Ogura, and V. M. Preciado, "SDP-Based moment closure for epidemic spreading processes on networks (accepted for publication)," IEEE Transactions on Network Science and Engineering, 2020. |
[8] | M. Ogura, M. Kishida, and J. Lam, "Geometric programming for optimal positive linear systems (accepted for publication)," IEEE Transactions on Automatic Control, November, 2020. |
[9] | N. Masuda, V. M. Preciado, and M. Ogura, "Analysis of the susceptible-infected-susceptible epidemic dynamics in networks via the non-backtracking matrix," IMA Journal of Applied Mathematics, vol. 85, no. 2, pp. 214--230, April, 2020. |
[10] | V. M. Preciado, M. Zargham, C. Nowzari, S. Han, M. Ogura, A. Jadbabaie, and G. J. Pappas, "Bio-inspired Framework for Allocation of Protection Resources in Cyber-Physical Networks," Principles of Cyber-Physical Systems, pp. 293--322, 10, 2020. |
[11] | 小蔵正輝,岸田昌子,林參, "大規模非負システムの幾何計画による最適設計," 計測と制御, vol. 60, no. 1, pp. 59--64, 01, 2021. |
[12] | 小蔵正輝, "中心性を使った感染症の制御," 経済セミナー, no. 717, pp. 42--46, 12, 2020. |
[13] | N. Masuda, V. M. Preciado, and M. Ogura, "Analysis of the susceptible-infected-susceptible epidemic dynamics in networks via the non-backtracking matrix," IMA Journal of Applied Mathematics, vol. 85, no. 2, pp. 214--230, 04, 2020. |
[14] | M. Ogura, M. Wenjie, and K. Sugimoto, "Synergistic effects in networked epidemic spreading dynamics," IEEE Transactions on Circuits and Systems II: Express Briefs, vol. 67, no. 3, pp. 496--500, 03, 2020. |
[1] | T. Kimura, and M. Ogura, "Distributed collaborative 3D-deployment of UAV base stations for on-demand coverage," IEEE INFOCOM 2020, pp. 1748--1757, July, 2020. |
[2] | C. Tanaka, A. Li, F. Peper, K. Leibnitz, K. Theofilis, N. Wakamiya, and M. Hasegawa, "Implementation of pulse-based multiplexing protocol for massive IoT," Proceedings of 2020 International Symposium on Nonlinear Theory and Its Applications (NOLTA 2020), pp. 346--349, November, 2020. |
[3] | F. Peper, K. Leibnitz, K. Theofilis, M. Hasegawa, N. Wakamiya, C. Tanaka, J. Teramae, S. Sekizawa, and A. Li, "On High-Density Resource-Restricted Pulse-Based IoT Networks," Proceedings of IEEE Global Communications Conference (GLOBECOM 2020), November, 2020. |
[4] | Y. Okumura, and N. Wakamiya, "Analysis of reservoir structure contributing to robustness against structural failure of Liquid State Machine," Proceedings of the 2nd International Workshop on Reservoir Computing, October, 2020. |
[5] | T. Higashino, and N. Wakamiya, "Verification and Proposal of Information Processing Model Using EEG-Based Brain Activity Monitoring," ICBENN 2021 : International Conference on Brain Engineering, Neuroscience and Neurocomputing, January, 2021. |
[6] | M. Ogura, M. Kishida, and J. Lam, "Optimization of positive linear systems via geometric programming," 24th International Symposium on Mathematical Theory of Networks and Systems upshape(accepted), 05, 2021. |
[7] | K. Kobayashi, M. Ogura, T. Kobayashi, and K. Sugimoto, "Deep unfolding-based output feedback control design for linear systems with input saturation," SICE International Symposium on Control Systems 2021 upshape(accepted), 01, 2021. |
[8] | M. Kumazaki, M. Ogura, and T. Tachibana, "Service chain construction with efficient VNF sharing based on model predictive control," 2020 International Conference on Emerging Technologies for Communications upshape(accepted), 12, 2020. |
[9] | K. Sugimoto, M. Ogura, K. Hanada, and T. Aihara, "Sampled-data suboptimal state estimation over lossy networks," 52nd ISCIE International Symposium on Stochastic Systems Theory and Its Applications, 10, 2020. |
[10] | C. Zgao, M. Ogura, and K. Sugimoto, "Finite-time control of discrete-time positive linear systems via convex optimization," SICE Annual Conference 2020, pp. 1230--1235, 09, 2020. |
[11] | Y. Abe, M. Ogura, H. Tsuji, A. Miura, and S. Adachi, "Resource and network management for satellite communications systems: a chance-constrained approach," IFAC World Congress 2020 upshape (accepted), 07, 2020. |
[1] | 若宮直紀, "脳に学ぶ無線センサネットワーク," 電子情報通信学会技術研究報告 (NS2020-26), vol. 120, no. 69, pp. 25--29, June, 2020. (招待講演), |
[2] | 小蔵正輝, "社会的距離戦略の数理:ネットワーク科学の観点から," 第1回SICEポストコロナ未来社会ワークショップ, June, 2020. |
[3] | 小林恒輝,小蔵正輝,岸田昌子,和田山正,杉本謙二, "深層学習を活用したフィードバック制御系設計," 第64回システム制御情報学会研究発表講演会, May, 2020. |
[4] | 山本航平,若宮直紀,中野亮,藤原亮介, "LTE環境における応答遅延特性の時系列モデリングによる分析," 電子情報通信学会技術研究報告 (IN2020-5), vol. 120, no. 30, pp. 19--24, May, 2020. |
[5] | "Panel Discussion: What have we learned so far?," 59th IEEE Conference on Decision and Control, 12, 2020. |
[6] | "アメリカでの学位取得後の職探し," 海外で活躍する若者たち:コロナを乗り切る留学・就職・長期滞在のノウハウ, 10, 2020. |
[7] | 小林恒輝,小蔵正輝,杉本謙二, "深層学習技術を用いたむだ時間システムの安定化の有効性評価," 信学技報, vol. 120, no. 292, RCC2020-16, pp. 31--34, 12, 2020. |
[8] | 木村達明,小蔵正輝, "ユーザQoS最大化のためのUAV空中基地局の自律分散配置法," 信学技報, vol. 120, no. 183, NS2020-72, pp. 86--96, 10, 2020. |
[9] | M. Ogura, "Second-order moment closures for networked susceptible-infected-susceptible model," 52nd ISCIE International Symposium on Stochastic Systems Theory and Its Applications, 10, 2020. |
[10] | 熊崎雅哉,小蔵正輝,橘拓至, "複数サービスチェインに対するモデル予測制御を用いたVNFインスタンス管理法," 2019年電子情報通信学会総合大会, pp. B--6--13, 03, 2019. |
[11] | 小林恒輝,小蔵正輝,岸田昌子,和田山正,杉本謙二, "深層学習を活用したフィードバック制御系設計," 第64回システム制御情報学会研究発表講演会, pp. 276--278, 05, 2020. |
[12] | F. Peper, K. Leibnitz, K. Theofilis, M. Hasegawa, C. Tanaka, K. Honda, A. Li, and and N. Wakamiya, "High-density wireless networks based on asynchronous pulse code multiple access (APCMA)," IEICE General Conference, pp. 239, March, 2021. |
[13] | K. Leibnitz, F. Peper, and N. Wakamiya, "Random walk-based search for improved 5-Pulse APCMA codes," IEICE General Conference, pp. 240, March, 2021. |
[14] | 若宮直紀, ライプニッツ賢治, ペパーフェルディナンド, 長谷川幹雄, "非同期 パルス符号多重通信APCMAの基本特性評価," 電子情報通信学会総合大会, pp. 241, March, 2021. |
[15] | 本多顕太郎, 田中智恵美, 李傲寒, Ferdinand Peper, Konstantinos Theofilis, 若宮直紀, 長谷川幹雄, "Massive IoTにおけるAPCMA方式の実装と性能評価," 電子情報通信学会総合大会, pp. 242, March, 2021. |
[1] | N. Kitaura, "Proposal and evaluation of a control method of cyborg insects movement to explore complicated environments," Master thesis, Osaka University, February, 2021. |
[2] | K. Mutsuzawa, "マイクロ波給電無線センサネットワークにおける森林火災延焼予測システム," Master thesis, Osaka University, February, 2021. |
[1] | 和田 弘匡, "ベイズ最適化を用いた無線端末収容方式におけるデータ選別による計算量削減," 特別研究報告, 大阪大学, February, 2021. |
[2] | 日茂 伶斗, "不均質なエージェント群に対する群れの性質を利用した誘導アルゴリズムの提案と評価," 特別研究報告, 大阪大学, February, 2021. |
[3] | 横山 泰誠, "特性変動がある無線LANにおける端末収容方式の提案," 特別研究報告, 大阪大学, February, 2021. |
[1] | T. Sakaguchi, and N. Wakamiya, "Consideration on liquid structure contributing to discrimination capability of Liquid State Machine," Nonlinear Theory and Its Applications, IEICE, vol. 11, no. 1, pp. 36-59, 2020. |
[2] | M. Ogura, and V. M. Preciado, "Stability of SIS spreading processes in networks with non-Markovian transmission and recovery," IEEE Transactions on Control of Network Systems, vol. 7, no. 1, pp. 349--359, 03, 2020. |
[3] | 今林亘,韓心又,小蔵正輝,杉本謙二, "フィードバック誤差学習制御におけるフィルタ設計と強正実性の達成," 計測自動制御学会論文集, vol. 56, no. 3, pp. 141--148, 03, 2020. |
[4] | 蓼沼知秀,小蔵正輝,杉本謙二, "観測信号と操作信号の損失にロバストなラウンドロビンスケジューリング切り替え制御系," 計測自動制御学会論文集, vol. 56, no. 3, pp. 89--97, 03, 2020. |
[5] | Y. Abe, M. Ogura, H. Tsuji, A. Miura, and S. Adachi, "Resource and network management framework for a large-scale satellite communications system," IEICE Transactions on Fundamentals of Electronics, Communications and Computer Sciences, vol. E103, no. 2, pp. 492--501, 02, 2020. |
[1] | Y. Okumura, and N. Wakamiya, "Consideration on Structural Property for Robust Liquid State Machine," Proceedings of the 2019 International Symposium on Nonlinear Theory and Its Applications (NOLTA 2019), pp. 265--268, December, 2019. |
[1] | 橋本匡史,若宮直紀, "ベイズ最適化を用いた無線ネットワーク制御の一検討," 電子情報通信学会技術研究報告 (SeMI2019-128), vol. 119, no. 436, pp. 145--146, March, 2020. (ポスター発表), |
[2] | 今林亘,小蔵正輝,杉本謙二, "BMIによるフィードバック誤差学習制御系の強正実化について," 計測自動制御学会 第7回制御部門マルチシンポジウム, pp. 1C1--3, March, 2020. |
[3] | 森純平,小蔵正輝,小林泰介,杉本謙二, "確率的勾配降下法を用いたマルコフ過程のスパースな補間," 計測自動制御学会 第7回制御部門マルチシンポジウム, pp. 3I1--2, March, 2020. |
[4] | 小蔵正輝,岸田昌子,林參, "幾何計画による非負システムの最適設計," 計測自動制御学会 第7回制御部門マルチシンポジウム, pp. 1G2--2, March, 2020. |
[5] | 阿部侑真,小蔵正輝,辻宏之,三浦周,足立修一, "大規模衛星通信システムのネットワーク最適化," 電子情報通信学会技術研究報告 (SAT2019-72), vol. 119, no. 417, pp. 29--32, February, 2020. |
[6] | 小蔵正輝, "ネットワーク化制御--サイバーフィジカルシステムを理解し,制御するために--," 電子情報通信学会 高信頼制御通信研究会, January, 2020. |
[7] | M. Aida, C. Takano, and M. Ogura, "On the fundamental equation of user dynamics and the structure of online social networks," NetSci-X 2020, pp. 155--170, January, 2020. |
[8] | 小林恒輝,小蔵正輝,岸田昌子,和田山正,杉本謙二, "Neural Ordinary Differential Equationを用いた静的出力フィードバック安定化の検討," 電子情報通信学会技術研究報告 (RCC2019-73), vol. 119, no. 395, pp. 19--22, January, 2020. |
[9] | M. Ogura, "Optimization of positive linear systems via geometric programming," Shenzhen University, December, 2019. (invited talk), |
[10] | M. Ogura, "Optimization of positive linear systems via geometric programming," Guandong University of Technology, December, 2019. (invited talk), |
[11] | 岸田昌子, 小蔵正輝, 吉田悠一, 和田山正, "Deep learning-based average consensus," 第22回情報論的学習理論ワークショップ, November, 2019. |
[12] | 森純平, 小蔵正輝, 杉本謙二, "深層学習を用いたマルコフ過程の補間に関する検討," 電子情報通信学会技術研究報告 (RCC2019-54), vol. 119, no. 270, pp. 7--10, November, 2019. text(高信頼制御通信研究専門委員会ベストポスター賞), |
[13] | 小林恒輝, 小蔵正輝, 岸田昌子, 和田山正, 杉本謙二, "深層展開による出力フィードバック安定化の検討," 電子情報通信学会技術研究報告 (RCC2019-65), vol. 119, no. 270, pp. 59--62, November, 2019. |
[14] | 八木聖太, 小蔵正輝, 岸田昌子, 杉本謙二, 林和則, "公平性を担保した送信電力制御アルゴリズムのロバスト安定化," 電子情報通信学会技術研究報告 (RCC2019-63), vol. 119, no. 270, pp. 49--52, November, 2019. |
[15] | 小蔵正輝, 今林亘, 会田雅樹, 杉本謙二, "社会ネットワークにおける振動ダイナミクスのスパース安定化," 第62回自動制御連合講演会, pp. 1A2--03, November, 2019. |
[16] | 小林恒輝, 小蔵正輝, 杉本謙二, "機会制約付き最適化問題におけるARIMAモデルを用いたデータセンターの省電力運用," 第62回自動制御連合講演会, pp. 2B1--04, October, 2019. |
[17] | 北浦直,若宮直紀, "サイボーグインセクトによる迅速な被災者発見のための移動制御手法," 第18回情報科学技術フォーラム, September, 2019. |
[18] | 会田雅樹, 高野知佐, 小蔵正輝, "ユーザダイナミクスの基礎方程式とオンライン社会ネットワークの構造について," 電子情報通信学会技術研究報告 (IN2019-21), vol. 119, no. 158, pp. 37--42, August, 2019. text(第26回情報ネットワーク研究賞), |
[1] | Y. Okumura, "Analysis of liquid structure contributing to robustness against structural failure of Liquid State Machine," Master thesis, Osaka University, February, 2020. |
[2] | R. Kanajiri, "Anomaly detection using incremental clustering and correlation coefficients in industrial wireless sensor networks," Master thesis, Osaka University, February, 2020. |
[3] | G. Bingxin, "Wireless charging using UAV with charging-aware routing for lifetime prolongation in wireless sensor networks," Master thesis, Osaka University, February, 2020. |
[4] | T. Sakaguchi, "Analysis of liquid structure contributing to separation property of Liquid State Machine," Master thesis, Osaka University, February, 2020. |
[5] | T. Tatsukawa, "Flatness of Loss Function for Robustness of Deep Neural Network to Input Noise," Master thesis, Osaka University, February, 2020. |
[1] | 中村 真也, "端末が混在する環境におけるベイズ最適化を用いた無線LAN制御手法の改良," 特別研究報告, 大阪大学, February, 2020. |
[2] | 松延 徹人, "無線システムが混在する環境におけるLoRaWANゲートウェイによる干渉発生予測に基づく衝突軽減手法," 特別研究報告, 大阪大学, February, 2020. |
[3] | 南野 貴正, "機械学習による運動推定における前腕表面筋電図の主要な電極の同定," 特別研究報告, 大阪大学, February, 2020. |
[4] | 山本 航平, "LTE環境における応答遅延特性の時系列モデリングを用いた分析," 特別研究報告, 大阪大学, February, 2020. |
[1] | Y. Igarashi, R. Nakano, and N. Wakamiya, "A Polling-Based Transmission Scheme Using a Network Traffic Uniformity Metric for Industrial IoT Applications," Sensors, vol. 19, no. 1, pp. 187, January, 2019. |
[1] | T. Sakaguchi, and N. Wakamiya, "Consideration on liquid structure contributing to discrimination in Liquid State Machine," Proceedings of the 7th Korea-Japan Joint Workshop on Complex Communication Sciences (KJCCS 2019), January, 2019. ( Best Paper Award), |
[2] | S. Ishihara, M. Hashimoto, N. Wakamiya, M. Murata, and Y. Kawamoto, "A Group-Based Scheduling Method for Landslide Detection System with Dense Wireless Sensor Network," Proceedings of the 5th International Conference on Infoation and Communication Technologies for Disaster Management (ICT-DM 2018), December, 2018. |
[3] | T. R. Crespo, J. Teramae, and N. Wakamiya, "Noise Robustness and Generalization of Bayesian Neural Networks with Lognormal Synaptic Weight," Proceedings of the 28th Annual Conference of the Japanese Neural Network Society, pp. 171--172, October, 2018. (Poster), |
[4] | Y. Murata, J. Teramae, and N. Wakamiya, "Reinforcement learning for visual attention with scalable size of attentional field," Proceedings of the 28th Annual Conference of the Japanese Neural Network Society, pp. 142--143, October, 2018. (Poster), |
[5] | T. Tatsukawa, J. Teramae, and N. Wakamiya, "Validity of the Flat Minima Approach to Understand Generalization of Deep Learning," Proceedings of the 28th Annual Conference of the Japanese Neural Network Society, pp. 144--145, October, 2018. (Poster), |
[6] | F. tomita, J. Teramae, and N. Wakamiya, "Biologically Plausible Learning Method with Minimizing Gap of Local Energy in Asymmetric Neural Network," Proceedings of the 28th Annual Conference of the Japanese Neural Network Society, pp. 120--121, October, 2018. (Poster), |
[7] | D. Kamei, and N. Wakamiya, "Analysis of LSM-Based Event Detection in Impulse-Based Wireless Sensor Networks," Proceedings of the 2018 International Symposium on Nonlinear Theory and Its Applications (NOLTA 2018), pp. 460--463, September, 2018. |
[1] | 東野利貴,清水菜々子,曽我真人,若宮直紀, "P300の潜時の違いによるModel Human Processorの検証," 教育システム情報学会(JSiSE)2018年度特集論文研究会, March, 2019. |
[2] | 坂口達郎, 若宮直紀, "リキッドステートマシンの弁別能力に寄与する構造的特性に関する考察," 電子情報通信学会技術研究報告 (NC2018-30), vol. 118, no. 367, pp. 11--16, December, 2018. |
[3] | M. Hashimoto, and N. Wakamiya, "A PCO-based scheduling method with slot jumping mechanisms for heterogeneous LPWANs," Vietnam-Japan Joint Workshop on Ambient Intelligence and Sensor Networks, November, 2018. |
[4] | 奥村祐太,若宮直紀, "リキッドステートマシンの構造欠損による弁別能力の低下を抑制する構造的特性に関する考察," 電子情報通信学会技術研究報 (CCS2017-27), vol. 118, no. 168, pp. 9--12, August, 2018. |
[5] | 橋本匡史, "大規模無線ネットワークにおけるスケジューリング," NetSci/CCS/ASN/IN研究会 第7回合同ワークショップ, August, 2018. (特別招待講演), |
[1] | S. Ishihara, "A congestion reduction method for reliable landslide area detection with dense wireless sensor networks," Master thesis, Osaka University, February, 2019. |
[2] | D. Kamei, "Consideration of LSM-based event detection in impulse-based wireless sensor networks," Master thesis, Osaka University, February, 2019. |
[3] | K. Hatanaka, "Analysis of layer dependency of each layer in multilayer LSTM networks," Master thesis, Osaka University, February, 2019. |
[4] | Y. Murata, "Reinforcement learning for visual attention with scalable size of attentional field," Master thesis, Osaka University, February, 2019. |
[5] | T. R. Crespo, "Effects of lognormal priors and variational posterior for Bayesian Neural Networks," Master thesis, Osaka University, February, 2019. |
[1] | 角井 大地, "異種端末が混在する無線LAN環境における端末の挙動のゲーム理論による分析," 特別研究報告, 大阪大学, February, 2019. |
[2] | 光安 海, "多様な端末が混在する無線LANにおけるベイズ最適化を用いたアクセスポイント制御方式," 特別研究報告, 大阪大学, February, 2019. |
[3] | 北浦 直, "サイボーグインセクトによる迅速な被災者発見のための自己組織型移動制御手法の提案と評価," 特別研究報告, 大阪大学, February, 2019. |
[4] | 辰巳 陸, "実環境における Radio Tomographic Imaging によるイベント検知の検証," 特別研究報告, 大阪大学, February, 2019. |
[5] | 佐伯 美緒, "多様なアプリケーションが混在するLoRaWAN における衝突軽減方式," 特別研究報告, 大阪大学, February, 2019. |
[1] | Y. Yoshino, M. Hashimoto, and N. Wakamiya, "A two-stage scheduling to improve capacity for inter-concentrator communication in hierarchical wireless sensor networks," IEICE Transactions on Communication, vol. E101.B, no. 1, pp. 58--69, January, 2018. |
[2] | Y. Igarashi, Y. Matsuura, M. Koizumi, and N. Wakamiya, "Priority-Based Dynamic Multichannel Transmission Scheme for Industrial Wireless Networks," Wireless Communications and Mobile Computing, vol. 2017, pp. 14, September, 2017. |
[1] | D. Kamei, and N. Wakamiya, "Consideration on separation property of impulse-based wireless sensor networks," Proceedings of the 6th Korea-Japan Joint Workshop on Complex Communication Sciences (KJCCS 2018), January, 2018. ( Best Paper Award), |
[2] | H. Kubota, J. Teramae, and N. Wakamiya, "An efficient sleep/wake-up protocol for localization in impulse wireless sensor networks," Proceedings of the 23rd Asia-Pacific Conference on Communications (APCC 2017), December, 2017. |
[3] | K. Hatanaka, J. Teramae, and N. Wakamiya, "Layer specificity of acquired memory duration in multilayer LSTM netwroks," Proceedings of the 2017 International Symposium on Nonlinear Theory and Its Applications (Nolta 2017), pp. 162--165, December, 2017. |
[1] | 富田 風太,寺前 順之介,若宮 直紀, "局所エネルギー差最小化による非対称結合下での学習アルゴリズム," 日本物理学会第73回年次大会, March, 2018. |
[2] | 石原 翔太,橋本 匡史,若宮 直紀,村田 正幸,川本 康貴, "高密度無線センサネットワークによる迅速な地すべり境界検知のためのグループ化に基づくスケジューリング方式," 電子情報通信学会技術研究報告 (ASN2017-97), vol. 117, no. 426, pp. 79--84, January, 2018. |
[3] | 嘉田久嗣,寺前順之介,徳田功, "大脳皮質ネットワークモデルの低頻度発火活動とノイズの協働性," 電子情報通信学会技術研究報 (CCS2017-23), vol. 117, no. 288, pp. 15--19, November, 2017. |
[4] | 亀井大登,若宮直紀, "インパルス無線センサネットワークの分離性に関する考察," 電子情報通信学会技術研究報 (CCS2017-15), vol. 117, no. 173, pp. 31--36, August, 2017. |
[5] | 村田悠太朗, 寺前順之介, 若宮直紀, "再帰的な選択的注意モデルにおける注意領域サイズの強化学習," 電子情報通信学会技術研究報告 (NC2017-18), vol. 117, no. 109, pp. 121--125, July, 2017. |
[6] | F. Peper, K. Leibnitz, T. Shimokawa, J. Teramae, A. Kasamatsu, S. Tanaka, and N. Wakamiya, "Evaluation of Binary Sensing with Adaptive Thresholds in Spiking Wireless Sensor Networks," 電子情報通信学会技術研究報告 (ASN2017-5), vol. 117, no. 57, pp. 23--26, May, 2017. |
[1] | 市川 嵩, "無線センサネットワークの耐故障性を保証するリレーノード配置手法," 修士論文, 大阪大学, February, 2018. |
[2] | K. Watanabe, "Noise suppression accounts for recurrent synaptic connectivity in local cortical circuit," Master thesis, Osaka University, February, 2018. |
[3] | H. Kubota, "Energy-efficient localization protocol in impulse wireless sensor networks," Master thesis, Osaka University, February, 2018. |
[1] | 奥村 祐太, "リキッドステートマシンの構造的特性が構造欠損に対するロバスト性に与える影響の評価," 特別研究報告, 大阪大学, February, 2018. |
[2] | 立川 剛至, "深層学習の汎化性能に対するflat minima approachの妥当性," 特別研究報告, 大阪大学, February, 2018. |
[3] | 坂口 達郎, "リキッドステートマシンの構造的特性が弁別能力に与える影響の評価," 特別研究報告, 大阪大学, February, 2018. |
[1] | U. Hiroaki, O. Masato, T. Jun-nosuke, and N. Yasushi, "Macroscopic neural mass model constructed from a current-based network model of spiking neurons," Biological Cybernetics, pp. 1--13, February, 2017. |
[2] | Y. Yoshino, M. Hashimoto, and N. Wakamiya, "A Divided Scheduling Method based on Structural Characteristics in Wireless Mesh Networks," The Journal of Multimedia Infoation Systems, vol. 3, no. 4, January, 2017. |
[3] | H. Kada, J. Teramae, and I. T. Tokuda, "Effective Suppression of Pathological Synchronization in Cortical Networks by Highly Heterogeneous Distribution of Inhibitory Connections," Frontiers in Computational Neuroscience, vol. 10, pp. 109, October, 2016. DOI |
[4] | T. Nakao, J. Teramae, and N. Wakamiya, "An adaptive routing protocol with balanced stochastic route exploration and stabilization based on short-term memory," IEICE Transactions on Communication, vol. E99-B, no. 11, pp. 2280-2288, November, 2016. |
[5] | H. Yang, N. Wakamiya, M. Murata, T. Iwai, and S. Yamano, "Autonomous and distributed mobility management scheme in mobile core networks," Wireless Network, April, 2016. |
[1] | J. Teramae, "Highly Nonrandom Synaptic Connectivity and Spontaneous Ongoing Fluctuation in Cortical Networks," Proceedings of the 2016 International Symposium on Nonlinear Theory and Its Application (NOLTA 2016), November, 2016. |
[2] | Y. Saitoh, J. Teramae, and N. Wakamiya, "Distributed Multipath Routing with Packet Allocation Based on the Attractor Renewal Model," Proceedings of the 2016 International Symposium on Nonlinear Theory and Its Application (NOLTA 2016), November, 2016. |
[3] | H. Kubota, J. Teramae, and N. Wakamiya, "Localization and area localization in impulse-radio wireless sensor networks," Proceedings of IEEE SENSORS 2016, October, 2016. (Poster presentation), |
[4] | N. Wakamiya, "Bio-inspired Design and Control of Information and Communication Systems," Proceedings of the 5th Japan-Korea Joint Workshop on Complex Communication Sciences (JKCCS 2016), October, 2016. (Poster presentation), |
[5] | Y. Yoshino, M. Hashimoto, and N. Wakamiya, "A Divided Scheduling Method based on Structural Characteristics in Wireless Mesh Networks," Proceedings of the 5th Japan-Korea Joint Workshop on Complex Communication Sciences (JKCCS 2016), October, 2016. ( Best Paper Award), |
[6] | K. Watanabe, J. Teramae, and N. Wakamiya, "Inferred duality of synaptic connectivity in local cortical circuit with receptive eld correlation," Proceedings of the 23rd International Conference on Neural Infoation Processing (ICONIP 2016), vol. 9947, pp. 115--122, September, 2016. |
[7] | S. Okamoto, and N. Wakamiya, "Autonomous Function Composition and Evolution for Adaptive Information Network," Proceedings of International Conference on Autonomic Computing (ICAC 2016), July, 2016. |
[8] | H. Yang, and N. Wakamiya, "A distributed mobility management scheme in flat mobile architecture," Proceedings of the 31st International Technical Conference on Circuits/Systems, Computers and Communications (ITC-CSCC 2016), July, 2016. |
[9] | K. Yamanaka, and N. Wakamiya, "Adaptive control of self-organized synchronization in wireless sensor networks," Proceedings of the 8th International Workshop on Guided Self-Organization (GSO 2016), July, 2016. |
[10] | S. Yamanaka, M. Hashimoto, and N. Wakamiya, "An Efficient Scheduling Method Based on Pulse-coupled Oscillator Model for Heterogeneous Large-scale Wireless Sensor Networks," Proceedings of the 7th International Conference on Ambient Systems, Networks and Technologies (ANT 2016), vol. 83, pp. 568--575, May, 2016. |
[1] | Y. Yoshino, M. Hashimoto, and N. Wakamiya, "Performance evaluation of a two-stage scheduling to improve capacity for inter-concentrator communication in hierarchical wireless sensor networks," 電子情報通信学会技術研究報告 (IN2016-157), vol. 116, no. 485, pp. 359--364, March, 2017. |
[2] | 若宮 直紀, "人と相互作用する情報ネットワーク," 電子情報通信学会 第11回通信行動工学研究会, February, 2017. (招待講演), |
[3] | I. Tokuda, H. Kada, and J. Teramae, "Suppression of Pathological Synchronization in Cortical Networks," 電子情報通信学会技術研究報告 (CCS2016-30), vol. 116, no. 285, pp. 5--8, November, 2016. |
[4] | 若宮 直紀, "生命のしくみに学ぶ情報ネットワーク設計・制御," 電子情報通信学会 ソサイエティ大会 情報ネットワーク科学に関する最新学術動向 (BI-3-5), September, 2016. |
[5] | 寺前順之介, 若宮直紀, "無線センサネットワークにおける再帰的ベイズ推定を用いたマルチホップ位置推定," 電子情報通信学会技術研究報告 (CCS2016-26), vol. 116, no. 180, pp. 53--58, August, 2016. |
[6] | 渡邉航平, 寺前順之介, 若宮直紀, "受容野相関モデルを利用した大脳皮質局所回路の大域的クラスタ性の解明," 電子情報通信学会技術研究報告 (NC2016-8), vol. 116, no. 120, pp. 171--174, July, 2016. |
[7] | 久保田遥,寺前順之介,若宮直紀, "インパルス無線センサネットワークによる検出事象領域の推定手法の提案," 電子情報通信学会技術研究報告 (IN2016-17), vol. 116, no. 45, pp. 89--94, May, 2016. |
[8] | 市川嵩,若宮直紀,中野亮,五十嵐悠一, "無線センサネットワークの耐故障性を保証する最少リレーノード配置手法," 電子情報通信学会技術研究報告 (ASN2016-2), vol. 116, no. 22, pp. 7--12, May, 2016. |
[1] | H. Yang, "A study on distributed mobility management scheme in mobile networks," PhD thesis, Osaka University, January, 2017. |
[1] | Y. Saitoh, "An evaluation of the attractor renewal model for adaptive multipath routing under competition among multiple routers," Master thesis, Osaka University, February, 2017. |
[2] | K. Yamanaka, "Control of structure self-organized by a Lotka-Volterra competition-diffusion model," Master thesis, Osaka University, February, 2017. |
[3] | S. Yamanaka, "A scheduling method based on pulse-coupled oscillator model for overlapped large-scale wireless sensor networks," Master thesis, Osaka University, February, 2017. |
[4] | Y. Yoshino, "A two-stage scheduling to improve capacity for inter-concentrator communication in hierarchical wireless sensor networks," Master thesis, Osaka University, February, 2017. |
[1] | 石原 翔太, "無線センサネットワークによる迅速な地すべり領域検知のためのグループ化に基づくメディアアクセス制御方式," 特別研究報告, 大阪大学, February, 2017. |
[2] | 亀井 大登, "インパルス無線センサによって構成されるニューラルネットワークの分離性に関する考察," 特別研究報告, 大阪大学, February, 2017. |
[3] | 曽根 大智, "階層構造を持つ自己組織化システムにおけるフロッキングアルゴリズムの分析," 特別研究報告, 大阪大学, February, 2017. |
[4] | 畑中 一輝, "多層 LSTM ネットワークにおけるユニット動作特性の層依存性の分析," 特別研究報告, 大阪大学, February, 2017. |
[5] | 村田 悠太朗, "再帰的ニューラルネットワークを用いた選択的注意モデルにおける注意領域サイズの学習手法の提案," 特別研究報告, 大阪大学, February, 2017. |
[1] | F. Peper, K. Leibnitz, J. Teramae, T. Shimokawa, and N. Wakamiya, "Low-Complexity Nanosensor Networking Through Spike-Encoded Signaling," IEEE Internet of Things Journal, pp. 49--58, February, 2016. |
[2] | K. Hisashi, T. Jun-nosuke, and T. T. Isao, "Synchronized Firing Induced by Correlated Bidirectional Couplings in a Neural Network Model for Spontaneous Activity," Journal of Signal Processing, vol. 19, no. 4, pp. 107-110, 2015. DOI http |
[1] | M. Hashimoto, N. Wakamiya, M. Murata, Y. Kawamoto, and K. Fukui, "End-to-end reliability- and delay-aware scheduling with slot sharing for wireless sensor networks," Proceedings of the 8th International Conference on Communication Systems & Networks (COMSNETS 2016), January, 2016. |
[2] | T. Nakao, J. Teramae, and N. Wakamiya, "Biologically-inspired adaptive routing protocol with stochastic route exploration," Proceedings of 9th EAI International Conference on Bio-inspired Infoation and Communications Technologies (BICT), December, 2015. ( Best Paper Award), |
[3] | H. Yang, N. Wakamiya, M. Murata, T. Iwai, and S. Yamano, "An Autonomous and Distributed Mobility Management Scheme in Mobile Core Networks," Proceedings of 9th EAI International Conference on Bio-inspired Infoation and Communications Technologies (BICT), December, 2015. |
[4] | N. Wakamiya, "Self-organization of large-scale, highly dense, and heterogeneous WSNs," Proceedings of the 21st Asia- Pacific Conference on Communications (APCC 2015), October, 2015. |
[5] | E. Takeshita, and N. Wakamiya, "Adaptive multipath routing for large-scale layered networks," Proceedings of The 17th Asia-Pacific Network Operations and Management Symposium (APNOMS 2015), pp. 221--226, August, 2015. |
[6] | G. Hasegawa, T. Iwai, and N. Wakamiya, "Temporal load balancing of time-driven machine type communications in mobile core networks," Proceedings of IFIP/IEEE IM 2015, May, 2015. |
[1] | 齋藤慶彦,寺前順之介,若宮直紀, "確率的経路制御へ向けたアトラクタ選択モデルの拡張とアトラクタ更新モデル," 電子情報通信学会 情報ネットワーク科学研究会, May, 2015. |
[2] | 山中聡一郎,橋本匡史,若宮直紀, "複数の無線センサネットワーク混在環境におけるパルス結合振動子モデルに基づく効率的なスケジューリング方式の提案," 電子情報通信学会技術研究報告 (ASN2015-54), vol. 115, no. 162, pp. 195--200, July, 2015. |
[3] | 吉野ゆり子,橋本匡史,若宮直紀, "無線メッシュネットワークにおけるトラヒック分散を利用したスケジューリング手法," 電子情報通信学会技術研究報告 (NS2015-98), vol. 115, no. 251, pp. 61--66, October, 2015. (ポスター発表), |
[4] | 山中克志, 若宮直紀, "無線センサネットワークにおけるパルス結合振動子モデルを用いた適応的な同期制御機構に関する検討," 電子情報通信学会技術研究報告 (IN2015-63), vol. 115, no. 310, pp. 11--16, November, 2015. |
[5] | 梅原広明,岡田真人,寺前順之介,成瀬康, "発火する神経細胞の電流ベースネットワークモデルから組む神経集団モデル," 電子情報通信学会技術研究報告 (CCS2015-51), vol. 115, no. 300, pp. 35--40, November, 2015. |
[6] | 若宮直紀, "階層構造を有する自己組織化システムにおける相互作用に関する一考察," 電子情報通信学会技術研究報告 (CQ2015-99), vol. 115, pp. 37--41, January, 2016. |
[7] | 神尾美里, 千野光礼, 永田翔一, 岡本聡, 山中直明, 若宮直紀, "リンクドコンテンツ配置へのゆらぎ制御の適用性の検討," 電子情報通信学会技術研究報告 (PN2015-73), pp. 37--41, January, 2016. |
[8] | K. Miyamoto, M. Hashimoto, and N. Wakamiya, "An energy-efficient transmission mechanism with considerations of QoS required by real-time applications in wireless LANs," 電子情報通信学会技術研究報告 (IN2015-119), vol. 115, pp. 65--70, March, 2016. |
[9] | 山中聡一郎,橋本匡史,若宮直紀, "データ収集周期が多様な WSN 環境におけるパルス結合振動子モデルに基づくスケジューリング方式の性能評価," 電子情報通信学会技術研究報告 (CCS2015-77), vol. 115, pp. 57--62, March, 2016. |
[1] | S. Okamoto, "Autonomous Function Composition for Information Network Adaptive to Changes in Service Request," Master thesis, Osaka University, February, 2016. |
[2] | T. Nakao, "An adaptive routing protocol with stochastic route exploration and memory-based stabilization," Master thesis, Osaka University, February, 2016. |
[3] | K. Miyamoto, "A QoS-aware energy-efficient transmission method for wireless LANs," Master thesis, Osaka University, February, 2016. |
[1] | 市川 嵩, "無線センサネットワークにおける耐故障性を保証する最少リレーノード配置手法の提案," 特別研究報告, 大阪大学, February, 2016. |
[2] | 渡邉 航平, "受容野相関を導入した神経ネットワークモデルの提案と自発的持続発火活動の分析," 特別研究報告, 大阪大学, February, 2016. |
[3] | 久保田 遥, "インパルス無線センサネットワークによる検出事象領域の推定手法の提案," 特別研究報告, 大阪大学, February, 2016. |
[4] | 山下 晃広, "情報伝達の遅延や損失が群れ行動モデルの振舞に与える影響に関する一検討," 特別研究報告, 大阪大学, February, 2016. |
[1] | J. Teramae, and N. Wakamiya, "Brain-Inspired Communication Technologies: Information Networks with Continuing Internal Dynamics and Fluctuation," IEICE Transactions on Communications, vol. E98-E, no. 1, pp. 153--159, February, 2015. |
[2] | M. Hashimoto, G. Hasegawa, and M. Murata, "An analysis of energy consumption for TCP data transfer with burst transmission over a wireless LAN," International Journal of Communication Systems, July, 2014. |
[1] | H. Mori, and N. Wakamiya, "Bio-inspired cluster-based routing for wireless Sensor networks," Proceedings of International Symposium on Nonlinear Theory and its Applications (NOLTA2014), pp. 791--794, September, 2014. |
[2] | K. Yamaguchi, J. Teramae, and N. Wakamiya, "Liquid State Machine with Heterogeneous Connections for Information Networks," Proceedings of International Symposium on Nonlinear Theory and its Applications (NOLTA2014), pp. 799--802, September, 2014. |
[3] | T. Nakao, J. Teramae, and N. Wakamiya, "Distributed routing protocol based on biologically-inspired attractor selection with active stochastic exploration and a short term memory," Proceedings of the 11th IEEE International Conference on Autonomic and Trusted Computing (ATC-2014), pp. 473--478, December, 2014. |
[4] | S. Okamoto, and N. Wakamiya, "Autonomous Function Composition for Information Network Adaptive to Changes in Service Request," Proceedings of International Conference on Bio-inspired Infoation and Communications Technologies (BICT), December, 2014. |
[5] | M. Hashimoto, G. Hasegawa, and M. Murata, "Experimental evaluation of SCTP tunneling for energy-efficient TCP data transfer over a WLAN," Proceedings of the 10th International Wireless Comunications & Mobile Computing Conference (IWCMC 2014), August, 2014. |
[6] | J. Teramae, "Intrinsic fluctuation in the cortical network and its application for neural computationIntrinsic fluctuation in the cortical network and its application for neural computation," Proceedings of International Symposium on Nonlinear Theory and its Applications (NOLTA2014), September, 2014. |
[7] | J. Teramae, "Stochastic dynamics and computation in network models of cortical spiking neurons," Workshop on Theory and Applications of Random/Non-autonomous Dynamical Systems, September, 2014. |
[8] | J. Teramae, "Origin and computational roles of intrinsic heterogeneity and spontaneous fluctuation in cortical networks," AIMS Conference on Dynamical Systems, Differential Equations and Applications, September, 2014. |
[9] | J. Teramae, "Introduction to Stochastic Differential Equations and its Application," Multidisciplinary Approach Forum 2014, September, 2014. |
[1] | 小川賢人,寺前順之介,若宮直紀, "無線ネットワークにおけるエンド間遅延の分散特性を考慮したアトラクタ摂動モデルの改良と評価," 第7回情報ネットワーク科学研究会, May, 2014. |
[2] | 宮本 圭祐,橋本 匡史,若宮直紀, "無線 LAN 環境における QoS 要求に適応した省電力通信方式の提案と実験評価," 電子情報通信学会技術研究報告 (CQ2014-66), vol. 114, no. 209, pp. 153--158, September, 2014. |
[3] | H. Yang, N. Wakamiya, M. Murata, T. Iwai, and S. Yamano, "A Study on Autonomous and Distributed Mobility Management Scheme in Mobile Networks -- Proposal and Evaluation of Mobility Management Scheme based on Attractor Selection Model --," 電子情報通信学会技術研究報告 (IN2014-90), vol. 114, no. 307, pp. 51--56, November, 2014. |
[4] | 進藤亜湖,若宮直紀,村田正幸,中野亮,高谷幸宏, "無線センサネットワークにおける干渉を考慮した自律分散的なバックアップ経路構築手法の提案と評価," 電子情報通信学会技術研究報告 (ASN2014-108), vol. 114, no. 418, pp. 7--12, January, 2015. |
[5] | T. Nakao, J. Teramae, and N. Wakamiya, "Distributed routing protocol based on biologically-inspired attractor selection with active stochastic exploration and a short-term memory," 電子情報通信学会 ヒューマンコミュニケーショングループ 「情報の認知と行動研究会」「情報の認知と行動研究会ワークショップ2014」, October, 2014. |
[6] | K. Yamaguchi, J. Teramae, and N. Wakamiya, "Brain-inspired liquid state machine and its possible applications to information-communication systems," 電子情報通信学会 ヒューマンコミュニケーショングループ 「情報の認知と行動研究会」「情報の認知と行動研究会ワークショップ2014」, October, 2014. |
[7] | 若宮直紀, "オールインパルス無線センサネットワーク," 電子情報通信学会 複雑コミュニケーションサイエンス研究会, March, 2015. |
[8] | 若宮直紀, "M2M/D2D/IoTネットワーキング技術," 情報通信マネージメントワークショップ, March, 2015. |
[9] | 寺前順之介, "Computational study for origin and functional roles of spontaneous ongoing fluctuation in cortical circuit," CiNet Seminar, July, 2014. |
[10] | 寺前順之介, "大脳皮質におけるゆらぎの起源と機能," 日本学術振興会Core-to-Coreプログラム「散逸ゆらぎ制御ナノ電子フォトン国際研究拠点」オープンセミナー, November, 2014. |
[11] | 寺前順之介, "頭の中は数学だらけ!考える脳を考える数学," 広がる数学V & 第12回JST数学キャラバン, November, 2014. |
[12] | 寺前順之介, "ゆらぎを作り活かす大脳皮質の情報処理メカニズム," 第3回CiNet脳情報ワークショップ, December, 2014. |
[13] | 寺前順之介, "神経システムにおける「むだ」と「あそび」の数理:構造と活動の二重性," 定量生物学第7回年会, January, 2015. |
[14] | 寺前順之介, "脳や生体の仕組みに学ぶ情報通信技術," 大学生のためのCiNet研究ワークショップ, March, 2015. |
[15] | 寺前順之介, "神経システムにおける「むだ」と「あそび」:疎構造の多重性," 日本物理学会第70回年次大会, March, 2015. |
[16] | 寺前順之介, "複雑コミュニケーションサイエンスに向けた理論研究からのアプローチ," 電子情報通信学会 総合大会 複雑コミュニケーションサイエンス研究会, March, 2015. |
[17] | 梅原広明,寺前順之介,成瀬康, "発火ニューロンモデルから組むニューラルマス要素モデル," 電子情報通信学会技術研究報告 (NC2014-112), vol. 114, no. 515, pp. 249--252, March, 2015. |
[1] | A. Shindo, "Interference-aware autonomous backup path construction for smart meter systems," Master thesis, Osaka University, February, 2015. |
[2] | E. Takeshita, "Adaptive Multipath Routing with Inter-network Cooperation in Large-scale Networks," Master thesis, Osaka University, February, 2015. |
[3] | H. Mori, "Bio-inspired cluster-based routing for small delay and reliable data gathering in wireless sensor networks," Master thesis, Osaka University, February, 2015. |
[4] | K. Yamaguchi, "Brain-Inspired Liquid State Machine for Wireless Sensor Network with Impulse Communication," Master thesis, Osaka University, February, 2015. |
[1] | 齋藤 慶彦, "確率的経路制御に向けたアトラクタ選択モデルの拡張と適応的アトラクタ更新モデル," 特別研究報告, 大阪大学, February, 2015. |
[2] | 難波 純平, "インパルス無線センサネットワークにおける検出イベントの空間構造推定," 特別研究報告, 大阪大学, February, 2015. |
[3] | 山中 克志, "無線センサネットワークにおけるパルス結合振動子モデルによる同期制御機構の検討," 特別研究報告, 大阪大学, February, 2015. |
[4] | 山中 聡一郎, "データ収集型センサネットワーク混在環境における公平かつ効率的なデータ収集のための自己型 MAC の提案," 特別研究報告, 大阪大学, February, 2015. |
[5] | 吉野 ゆり子, "大規模な無線メッシュネットワークにおける送信電力制御と経路制御の統合化手法の提案," 特別研究報告, 大阪大学, February, 2015. |
[1] | J. Teramae, Y. Tsubo, and T. Fukai, "Long-Tailed Statistics of Corticocortical EPSPs: Origin and Computational Role of Noise in Cortical Circuits," Advances in Cognitive Neurodynamics, pp. 161--167, 2013. |
[2] | M. Hashimoto, G. Hasegawa, and M. Murata, "SCTP Tunneling: Flow Aggregation and Burst Transmission to Save Energy for Multiple TCP Flows over a WLAN," IEICE Transactions on Communications, vol. E96-B, pp. 2615--2624, October, 2013. |
[1] | T. Iwai, N. Wakamiya, and M. Murata, "Characteristic analysis of response threshold model and its application for self-organizing network control," Proceedings of International Conference on Self-organizing Systems (IWSOS 2013), May, 2013. |
[2] | N. Kuze, N. Wakamiya, D. Kominami, and M. Murata, "Proposal and evaluation of a predictive mechanism for ant-based routing," Proceedings of International Conference on Emerging Network Intelligence (EMERGING 2013), September, 2013. |
[3] | N. Onzuka, N. Wakamiya, and M. Murata, "Robust and lightweight routing with attractor selection," Proceedings of World Conference on Infoation Technology (WCIT 2013), December, 2013. |
[4] | E. Takeshita, and N. Wakamiya, "Proposal and evaluation of attractor selection-based adaptive routing in layered networks," Proceedings of International Symposium on Ubiquitous Intelligence and Autonomic Systems (UIAS-2013), December, 2013. |
[5] | F. Peper, N. Wakamiya, A. Kasamatsu, S. Tanaka, K. Leibnitz, J. Teramae, K. Kasai, and A. Otomo, "On neuro-inspired wireless sensor networks," Proceedings of International Symposium on Ubiquitous Intelligence and Autonomic Systems (UIAS-2013), December, 2013. |
[6] | J. Teramae, and T. Fukai, "Optimal Spike-Based Communication with Internal Fluctuation in Cortical Networks," Proceedings of International Symposium on Nonlinear Theory and its Applications, September, 2013. |
[7] | J. Teramae, "Origin and functional roles of spontaneous noise in the brain: Self-organized stochastic resonance and memory states," Proceedings of Modeling Neural Activity: Statistics, Dynamical Systems, and Networks, June, 2013. |
[8] | J. Teramae, "Noise-Induced Order and Computation in the Brain," Proceedings of Progress of Mathematical Studies in Neuroscience, National Center for Theoretical Sciences, June, 2013. |
[1] | 竹下絵莉奈,若宮直紀, "アトラクタ選択モデルに基づく階層化経路制御手法の提案と評価," 電子情報通信学会技術研究報告 (IN2012-166), pp. 71--76, March, 2013. |
[2] | 山本宏,若宮直紀,村田正幸, "階層的な適応型経路制御における階層間相互作用に関する検討," 電子情報通信学会技術研究報告 (IN2012-191), pp. 221--226, March, 2013. |
[3] | 清水太一,菅野正嗣,若宮直紀, "受信端末駆動型通信方式に基づいた大規模スマートメータリングシステムにおけるデータ収集のための手法の提案と評価," 電子情報通信学会技術研究報告 (AN2012-76), pp. 275--280, March, 2013. |
[4] | 寺前 順之介,坪 泰宏,平谷 直輝,深井 朋樹, "大脳皮質自発発火活動と確率的記憶状態," 第36回日本神経科学会, June, 2013. |
[5] | 進藤亜湖,若宮直紀, "RPL によるサービスネットワーク多重化のための通信タイミング制御手法の提案と評価," 電子情報通信学会技術研究報告 (IN2013-3), vol. 113, pp. 13--18, April, 2013. |
[6] | 田辺智行,若宮直紀,村田正幸, "無線センサネットワークにおける複数リングを用いた情報共有手法の提案と評価," 電子情報通信学会技術研究報告 (ASN2013-43), pp. 283--286, May, 2013. |
[7] | 櫻井駿,長谷川剛,若宮直紀,岩井孝法, "モバイルネットワークにおける通信制御コスト削減のための端末集約手法の性能評価," 電子情報通信学会技術研究報告 (MoNA2013-10), pp. 193--198, May, 2013. |
[8] | 橋本 匡史,長谷川 剛,村田 正幸, "無線 LAN における省電力 TCP データ転送方式の実験評価," 電子情報通信学会技術研究報告 (CQ2013-47), vol. 113, pp. 113-118, September, 2013. |
[9] | 岩井孝法,長谷川剛,若宮直紀, "モバイルコアネットワークへアクセス負荷を平滑化するためのバックオフ機構の拡張," 電子情報通信学会技術研究報告 (MoNA2013-60), pp. 67--72, January, 2014. |
[10] | 中尾知紘,寺前順之介,若宮直紀, "記憶を持つアトラクタ選択モデルに基づく能動的な経路制御手法の提案と評価," 電子情報通信学会技術研究報告 (IN2013-177), pp. 199--203, March, 2014. |
[11] | 寺前 順之介, "大規模システムとしての大脳皮質ゆらぎの効果," 日本物理学会第69回年次大会, March, 2014. |
[12] | 嘉田久嗣,寺前順之介,徳田功, "大脳皮質の自発発火モデルにみられる同期現象の抑制性神経回路による制御," 日本物理学会第69回年次大会, March, 2014. |
[1] | N. Asvarujanon, K. Leibnitz, N. Wakamiya, and M. Murata, "Resilient Mobile Ad Hoc Routing with Attractor Selection for Dense and Heavy Traffic Scenarios," International Journal of Autonomous and Adaptive Communication Systems, 2012. |
[2] | S. Kajioka, N. Wakamiya, and M. Murata, "Autonomous and Adaptive Resource Allocation among Multiple Nodes and Mutiple Applications in Heterogeneous Wireless Networks," Journal of Computer and System Sciences, vol. 78, pp. 1673--1685, November, 2012. |
[3] | J. Teramae, Y. Tsubo, and T. Fukai, "Optimal spike-based communication in excitable networks with strong-sparse and weak-dense links," Scientific Reports 2, vol. 485, 2012. |
[4] | T. Iwai, N. Wakamiya, and M. Murata, "Response Threshold Model-based Device Assignment for Cooperative Resource Sharing in a WSAN," International Journal of Swa Intelligence and Evolutionary Computation, vol. 1, April, 2012. |
[5] | N. Hiratani, J. Teramae, and T. Fukai, "Associative memory model with long-tail-distributed Hebbian synaptic connections," Front Comput Neuroscience 6, vol. 102, February, 2013. |
[1] | J. Teramae, Y. Tsubo, and T. Fukai, "Spike-based stochastic resonance with optimal internal noise in cortical networks with strong-sparse weak-dense connections," Proceedings of 42nd Annual Meeting of Society for Neuroscience (Neuroscience 2012), October, 2012. |
[2] | N. Hiratani, J. Teramae, and T. Fukai, "A spike-based associative memory with strong-sparse and weak-dense Hebbian connections," Proceedings of 42nd Annual Meeting of Society for Neuroscience (Neuroscience 2012), October, 2012. |
[3] | N. Kuze, N. Wakamiya, and M. Murata, "Proposal and Evaluation of Ant-based Routing with Prediction," Proceedings of Fifth International Workshop on Guided Self-Organization (GSO 2012), September, 2012. |
[4] | N. Kuze, N. Wakamiya, and M. Murata, "Proposal and Evaluation of Ant-based Routing with Autonomous Zoning for Convergence Improvement," Proceedings of International Conference on Network-based Infoation Systems (NBiS 2012), September, 2012. |
[5] | T. Tanabe, N. Wakamiya, and M. Murata, "Comparative Evaluation of Information Dissemination Methods for Effective and Efficient Information Sharing in Wireless Sensor Networks," Proceedings of Asia-Pacific Symposium on Infoation and Telecommunication Technologies (APSITT 2012), November, 2012. |
[6] | M. Waki, N. Wakamiya, and M. Murata, "Proposal and Evaluation of Attractor Perturbation-based Rate Control for Stable End-to-end Delay," Proceedings of International Conference on Bio-Inspired Models of Network, Infoation, and Computing Systems (BIONETICS 2012), pp. 1--15, December, 2012. |
[1] | 寺前順之介, "中枢神経系の構造・ダイナミクス・確率的情報処理," 定量生物学の会第 5 回年会, November, 2012. |
[2] | 岩井卓也,若宮直紀,村田正幸, "無線センサ・アクチュエータネットワークにおける複数サービス間での資源共有を実現する自己組織型デバイス割当機構の提案と評価," 電子情報通信学会技術研究報告 (IN2012-8), pp. 37--42, April, 2012. |
[3] | 岩井卓也,若宮直紀,村田正幸, "自己組織型ネットワーク制御のための反応閾値モデルの特性分析," 電子情報通信学会ソサイエティ大会 (BS-7-58), September, 2012. |
[4] | 岩井孝法,長谷川剛,若宮直紀,本吉彦,吉川隆士, "モバイルコアネットワークにおけるトンネル集約方式," 電子情報通信学会技術研究報告 (NS2012-136), pp. 115--120, December, 2012. |
[5] | 寺前順之介, "神経ネットワークにおけるノイズの起源と機能," 力学系とその周辺分野の研究, July, 2012. (招待講演), |
[6] | 寺前順之介, "計算論的視点からの神経オシレーションと揺らぎの数理," 神経オシレーション: 共振とディスリズミア, July, 2012. (招待講演), |
[7] | 寺前順之介, "リズムと揺らぎへの数理アプローチ," 生物リズム 若手研究者の集い, August, 2012. (招待講演), |
[8] | 寺前順之介, "背景ゆらぎを積極的に織り込む神経ネットワークの情報伝達戦略," NetSci/CCS 研究会 合同ワークショップ, August, 2012. (招待講演), |
[9] | 寺前順之介, "揺らぎを活かす生物の情報処理 -神経情報処理へのアプローチ-," 生物物理若手の会第52回夏の学校, August, 2012. (招待講演), |
[10] | 寺前順之介, "神経情報処理における自発活動の動的特性," ネットワーク構造と生命現象, November, 2012. (招待講演), |
[11] | J. Teramae, "Internal noise and memory states in cortical networks with highly heterogeneous connections," 統計数理研究所研究会神経科学と統計科学の対話3, February, 2013. |