Publication

Since 2016

Books (in English)

  • Alexandre Mauroy, Igor Mezic, and, Yoshihiko Susuki (Eds.), The Koopman Operator in Systems and Control: Concepts, Methodologies and Applications (Springer Nature, February 2020). [Springer][Amazon.co.jp]
  • Tatsuya Suzuki, Shinkichi Inagaki, Yoshihiko Susuki, and Anh Tuan Tran (Eds.), Design and Analysis of Distributed Energy Management Systems – Integration of EMS, EV, and ICT (Springer Nature, February 2020). [Springer][Amazon.co.jp]

Archival Journal Articles (in English; reviewed)

  • Shota Yumiki, Yoshihiko Susuki, Yuta Oshikubo, Yutaka Ota, Ryo Masegi, Akihiko Kawashima, Atsushi Ishigame, Shinkichi Inagaki, and Tatsuya Suzuki, Autonomous vehicle-to-grid design for provision of frequency control ancillary service and distribution voltage regulation, Sustainable Energy, Grids and Networks, February 2022 (online available). [arXiv:2101.10518][sciencedirect]
  • Kenji Takamichi, Yoshihiko Susuki, Marcos Netto, and Atsushi Ishigame, A mode-in-state contribution factor based on Koopman operator and its application to power system analysis, Nonlinear Theory and Its Applications, IEICE, 13, 2, April 2022 (to appear).
  • Haruki Tadano, Yoshihiko Susuki, and Atsushi Ishigame, Asymptotic assessment of distribution voltage profile using a nonlinear ODE model, Nonlinear Theory and Its Applications, IEICE, 13, 1, 149-168, January (2022). [arXiv:2101.09945][J-STAGE]
  • Marcos Netto, Yoshihiko Susuki, Venkat Krishnan, and Yingchen Zhang, On analytical construction of observable functions in extended dynamic mode decomposition for nonlinear estimation and prediction, IEEE Control Systems Letters, 5, 6, 1868-1873, December (2021) (published online). [arXiv:2008.12874][IEEE-Xplore]
  • Yoshihiko Susuki, Alexandre Mauroy, and Igor Mezic, Koopman resolvent: A Laplace-domain analysis of nonlinear autonomous dynamical systems, SIAM Journal on Applied Dynamical Systems, 20, 4, 2013-2036, October (2021). [arXiv:200911544][SIAM]
  • Naoki Kawamoto, Yoshihiko Susuki, Salvatore D’Arco, Atsushi Ishigame, Denis Mende, and David Sebastian Stock, Load margin for short-term voltage stability of an interconnected AC/MTDC system, Nonlinear Theory and Its Applications, IEICE, 12, 4, 711-717, October (2021). [J-STAGE]
  • Mamoru Futakuchi, Satoshi Takayama, and Atsushi Ishigame, Scheduled operation of wind farm with battery system using deep reinforcement learning, IEEJ Transactions on Electrical and Electronic Engineering, 16, 5, 687-695, April (2021) [Wiely]
  • Naoki Kawamoto, Yoshihiko Susuki, and Atsushi Ishigame, Estimation of stability region for an interconnected AC/multi-terminal DC grid, Nonlinear Theory and Its Applications, IEICE, 11, 4, 610-623, October (2020). [J-STAGE]
  • Naoto Hiramatsu, Yoshihiko Susuki, and Atsushi Ishigame, Koopman mode decomposition of oscillatory temperature field inside a room, Physical Review E, 102, 022210, August (2020). [APS]
  • Yoshihiko Susuki and Igor Mezic, Invariant sets in quasiperiodically forced dynamical systems, SIAM Journal on Applied Dynamical Systems, 19, 1, 329-351, January (2020). [SIAM]
  • Naoto Mizuta, Shotaro Kamo, Hidekuni Toda, Yoshihiko Susuki, Yutaka Ota, and Atsushi Ishigame, A hardware-in-the-loop testing of multi-objective ancillary service by in-vehicle batteries: Primary frequency control and distribution voltage support, IEEE Access, 7, 1, 161246-161245, November (2019). [IEEE-Xplore]
  • Fredrik Raak, Yoshihiko Susuki, Junya Eguchi, and Takashi Hikihara, Role of deterministic electromechanical conversion for short-term fluctuations in wind power: A case study in Japan, Physical Review Applied, 12, 034013, September (2019). [APS]
  • Naoto Mizuta, Yoshihiko Susuki, Yutaka Ota, and Atsushi Ishigame, Synthesis of spatial charging/discharging patterns of in-vehicle batteries for provision of ancillary service and mitigation of voltage impact, IEEE Systems Journal, 13, 3, 3443-3453, September (2019). [IEEE-Xplore]
  • Hikaru Hoshino, Yoshihiko Susuki. T. John Koo, and Takashi Hikihara, Structural analysis and control of a model of two-site electricity and heat supply, ASME Journal of Dynamic Systems, Measurement and Control, 141, 10, 101004, June (2019). [ASME]
  • Chiaki Kojima, Yoshihiko Susuki, and Shinji Hara, Dissipativity-based stability analysis of networked nonlinear descriptor systems and its application to power grids, SICE Journal of Control, Measurement, and System Integration, 12, 1, 29-38, January (2019). [J-STAGE]
  • Marcos Netto, Yoshihiko Susuki, and Lamine Mili, Data-driven participation factors for nonlinear systems based on Koopman mode decomposition, IEEE Control Systems Letters, 3, 1, 198-203, January (2019). [IEEE-Xplore]
  • Shoko Kimura, Yoshihiko Susuki, and Atsushi Ishigame, A reactive management system for reliable electricity supply in a building microgrid with vehicle-to-grid interaction, IEICE Transactions on Fundamentals of Electronics, Communications and Computer Sciences, E101-A, 8, 1172-1184, August (2018). [IEICE]
  • Kohtaro Yoshida, Shintaro Negishi, Satoshi Takayama, and Atsushi Ishigame, Scheduled operation of wind farm with a battery-energy-storage-system considering ramp events, Journal of International Council on Electrical Engineering, 8, 1, 144-154, July (2018). [Taylor&Francis-Online]
  • Fredrik Raak, Yoshihiko Susuki, Kazuhisa Tsuboki, Masaya Kato, Shinya Eguchi, and Takashi Hikihara, Assessment of offshore wind farm characteristics with the cloud resolving storm simulator: A case study in Japan, Wind Energy, 21, 7, 531-543, July (2018). [Wiley-Online]
  • Qiang Wu, T. John Koo, and Yoshihiko Susuki, Dynamic security analysis of power systems by a sampling-based algorithm, ACM Transactions on Cyber-Physical Systems, 2, 2, article no.10, June (2018). [ACM-DL]
  • Yohei Kono, Yoshihiko Susuki, Mitsunori Hayashida, Igor Mezic, and Takashi Hikihara, Multiscale modeling of in-room temperature distribution with human occupancy data: A practical case study, Journal of Building Performance Simulation, 11, 2, 145-163, February (2018). [Taylor&Francis-Online]
  • Fredrik Raak, Yoshihiko Susuki, Kazuhisa Tsuboki, Masaya Kato, and Takashi Hikihara, Quantifying smoothing effects of wind power via Koopman mode decomposition: A numerical test with wind speed predictions in Japan, Nonlinear Theory and Its Applications, IEICE, 8, 4, 342-357, October (2017). [J-STAGE]
  • Chiaki Kojima, Yoshihiko Susuki, Koji Tsumura, and Shinji Hara, Decomposition of energy function and hierarchical diagnosis of power grid swing instabilities, Nonlinear Theory and Its Applications, IEICE, 7, 4, 523-547, October (2016). [J-STAGE]
  • Yoshihiko Susuki, Igor Mezic, Fredrik Raak, and Takashi Hikihara, Applied Koopman operator theory for power systems technology, Nonlinear Theory and Its Applications, IEICE, 7, 4, 430-459, October (2016). [J-STAGE]
  • Hikaru Hoshino, Yoshihiko Susuki, and Takashi Hikihara, A lumped-parameter model of multiscale dynamics in steam supply systems, ASME Journal of Computational and Nonlinear Dynamics, 11, 6, 061018, September (2016). [ASME]
  • Fredrik Raak, Yoshihiko Susuki, and Takashi Hikihara, Data-driven partitioning of power networks via Koopman mode analysis, IEEE Transactions on Power Systems, 31, 4, 2799-2808, July (2016). [IEEE-Xplore]

International Conference Proceedings (reviewed)

  • Yoshihiko Susuki, On Koopman operator framework for semi-explicit differential-algebraic equations, Preprints. of Third IFAC Conference on Modeling, Identification and Control of Nonlinear Systems, 361-365, September (2021). [IFAC]
  • Yoshihiko Susuki, Naoki Kawamoto, Yuichi Ohashi, Atsushi Ishigame, Tsuyoshi Funaki, and Salvatore D’Arco, A modular approach to large-signal modeling of an interconnected AC/MTDC system, Proc. of IEEE PES Innovative Smart Grid Technologies Europe, 945-949, October (2020). [IEEE-Xplore]
  • Shota Yumiki, Yoshihiko Susuki, Ryo Masegi, Akihiko Kawashima, Atsushi Ishigame, Shinkichi Inagaki, and Tatsuya Suzuki, Computing an upper bound for charging/discharging patterns of in-vehicle batteries towards cooperative transportation-energy management, Proc. of IEEE Intelligent Transportation Systems Conference, 655-600, October (2019). [IEEE-Xplore]
  • Marcos Netto, Venkat Krishnan, Lamine Mili, Yoshihiko Susuki, and Yingchen Zhang, A hybrid framework combining model-based and data-driven methods for hierarchical decentralized robust dynamic state estimation, Proc. of IEEE PES General Meeting, August (2019). [IEEE-Xplore]
  • Izumi Masaki, Yoshihiko Susuki, Igor Mezic, and Atsushi Ishigame, An LC-circuit model for dynamics of in-building heat transfer across atrium space, Proc. of 4th Asia Conference of International Building Performance Simulation Association, Paper No. 371, December (2018). [IoP]
  • Shoko Kimura, Yoshihiko Susuki, and Atsushi Ishigame, An MPC-based availability design of a building microgrid with in-vehicle battery, Proc. of IEEE Global Conference on Consumer Electronics, 573-577, October (2018). [IEEE-Xplore]
  • Naoto Hiramatsu, Yoshihiko Susuki, and Atsushi Ishigame, An estimation of in-room temperature gradient using Koopman mode decomposition, Proc. of SICE Annual Conference, September (2018).
  • Alexandre Mauroy and Yoshihiko Susuki, Introduction to the Koopman operator in systems and control, Proc. of SICE Annual Conference, September (2018).
  • Yoshihiko Susuki and Aranya Chakrabortty, Introduction to Koopman mode decomposition for data-based technology of power system nonlinear dynamics, IFAC-PapersOnLine, 51, 28, 327-332, September (2018). [IFAC-PapersOnLine]
  • Milan Korda, Yoshihiko Susuki, and Igor Mezic, Power grid transient stabilization using Koopman model predictive control, IFAC-PapersOnLine, 51, 28, 297-302, September (2018). [IFAC-PapersOnLine]
  • Yoshihiko Susuki and Kyoichi Sako, Data-based voltage analysis of power systems via delay embedding and extended dynamic mode decomposition, IFAC-PapersOnLine, 51, 28, 221-226, September (2018). [IFAC-PapersOnLine]
  • Chika Wada, Satoshi Takayama, Yoshihiko Susuki, Atsushi Ishigame, Kazuhiro Deguchi, Kota Konishi, and Kenichi Tanaka, A multi-scale optimal supply planning in microgrid with imbalance specification, IFAC-PapersOnLine, 51, 28, 215-220, September (2018). [IFAC-PapersOnLine]
  • Satoshi Takayama and Atsushi Ishigame, Autonomous decentralized control of distribution network voltage using reinforcement learning, IFAC-PapersOnLine, 51, 28, 209-314, September (2018). [IFAC-PapersOnLine]
  • Yoshihiko Susuki, Ryo Hamasaki, and Atsushi Ishigame, Estimation of power system inertia using nonlinear Koopman modes, Proc. of IEEE PES General Meeting, August (2018). [IEEE-Xplore]
  • Satomi Sugaya, Yoshihiko Susuki, Atsushi Ishigame, Andrea Mammoli, and Manel Martinetz-Ramon, Modeling nonlinear dynamic system in RKHS through the Koopman operator, Proc. of 2017 International Symposium on Nonlinear Theory and its Applications, 7-10, December (2017). [IEICE]
  • Shoko Kimura, Yoshihiko Susuki, and Atsushi Ishigame, A reactive BEMS for reliable power supply with SOFC hydrogen coproduction unit, Proc. of 2017 IEEE 6th Global Conference on Consumer Electronics, 799-803, October (2017). [IEEE-Xplore]
  • Yoshihiko Susuki, Naoto Mizuta, Akihiko Kawashima, Yutaka Ota, Atsushi Ishigame, Shinkichi Inagaki, and Tatsuya Suzuki, A continuum approach to assessing the impact of spatio-temporal EV charging to distribution grids, Proc. of IEEE 20th International Conference on Intelligent Transportation Systems, 2372-2377, October (2017). [IEEE-Xplore]
  • Yoshihiko Susuki, Tsukasa Saito, Hikaru Hoshino, and Takashi Hikihara, Synthesis and real-time simulation of reactive controller for hot-water supply in a safety-critical hospital environment, Proc. of 2017 IEEE Conference on Control Technology and Applications, 211-216, August (2017). [IEEE-Xplore]
  • Naoto Mizuta, Yoshihiko Susuki, Yutaka Ota, and Atsushi Ishigame, An ODE-based design of spatial charging/discharging patterns of in-vehicle batteries for provision of ancillary service, Proc. of 2017 IEEE Conference on Control Technology and Applications, 193-198, August (2017). [IEEE-Xplore]
  • Naoki Kawamoto, Satoshi Takayama, and Atsushi Ishigame, Emergency voltage and reactive power control using reduction of variables considering effectiveness against voltage stability, Proc. of IEEE PES General Meeting, 1-5, July (2017). [IEEE-Xplore]
  • Fredrik Raak, Yoshihiko Susuki, Igor Mezic, and Takashi Hikihara, On Koopman and dynamic mode decompositions for application to dynamic data with low spatial dimension, Proc. of IEEE Conference on Decision and Control, 6485-6491, December (2016). [IEEE-Xplore]
  • Satoshi Takayama and Atsushi Ishigame, Fluctuation Suppression Control of Wind Power Generation Utilizing Deterministic Optimization Method, Proc. of IEEE Southern Power Electronics Conference (SPEC2016), Auckland, New Zealand, December (2016). [IEEE-Xplore]
  • Yohei Kono, Yoshihiko Susuki, Mitsunori Hayashida, and Takashi Hikihara, Modeling of effective heat diffusion in a building atrium via Koopman mode decomposition, Proc. of International Symposium on Nonlinear Theory and its Applications, 362-365, November (2016).
  • Fredrik Raak, Yoshihiko Susuki, Kazuhisa Tsuboki, Masaya Kato, and Takashi Hikihara, On smoothing effects of wind power via Koopman mode decomposition, Proc. of International Symposium on Nonlinear Theory and its Applications, 366-369, November (2016).
  • Hikaru Hoshino, Yoshihiko Susuki, and Takashi Hikihara, Basins of attraction of steady operating conditions in a two-site electricity and heat supply system, Proc. of International Symposium on Nonlinear Theory and its Applications, 675-678, November (2016). [IEICE]
  • Yoshinori Okukita, Seiji Yonezawa, Satoshi Takayama, Atsushi Ishigame, Takaharu Ito, Takayoshi Yamamoto, and Takeshi Koike, Study on a Voltage Control Method of a TVR considering Parameter Changes, Proc. of IFAC Workshop on Control of Transmission and Distribution Smart Grids, 1-6, October (2016). [IFAC-PapersOnLine]