研究者業績
					
	
	基本情報
- 所属
 - 上智大学 理工学部機能創造理工学科 教授 (機能創造理工学科長)(兼任)理工学部機能創造理工学科長
 
- 学位
 - 学士(工学)(1994年3月 東京大学)修士(工学)(1996年3月 東京大学)博士(工学)(1999年3月 東京大学)
 
- 研究者番号
 - 30318216
 - ORCID ID
 
 https://orcid.org/0000-0002-0565-1836- J-GLOBAL ID
 - 200901095855001879
 - Researcher ID
 - R-5307-2019
 - researchmap会員ID
 - 1000256243
 
- 外部リンク
 
エネルギー・人・物を運ぶ社会インフラを電気工学で最適にデザインする研究を行っています。詳細な活動内容については,宮武研究室 (Transportation Electrification & Smartification lab: TESlab) Website等を是非ご覧下さい。
[宮武の自己紹介] [Research Gate] [GoogleScholar Citations] [Scopus]
(研究テーマ)
- 交通システム、特に電気鉄道における省エネルギー運転法
 - 公共交通システムの運行管理制御
 - 太陽光・風力発電におけるパワーコンディショナの最大電力点追従制御法
 - 分散型自然エネルギーハイブリッド発電システムの制御
 
(共同・受託研究希望テーマ)
(その他Webサイト)
主要な研究分野
5主要な経歴
8- 
	2014年4月 - 現在
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	2008年4月 - 2014年3月
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	2004年4月 - 2008年3月
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	2000年4月 - 2004年3月
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	1999年4月 - 2000年3月
 
主要な学歴
3- 
	1996年4月 - 1999年3月
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	1994年4月 - 1996年3月
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	1990年4月 - 1994年3月
 
主要な委員歴
11- 
	2015年4月 - 現在
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	2021年4月 - 2024年10月
 - 
	2021年9月 - 2023年3月
 
主要な受賞
10論文
140- 
	2025 7th Global Power, Energy and Communication Conference (GPECOM) 741-747 2025年6月11日 査読有りAccess to reliable and sustainable electricity remains a critical challenge in Timor-Leste. This island developing nation relies on imported diesel for over 99% of its electricity generation, with the government subsidizing more than 80% of energy costs. This study investigates the techno-economic feasibility of a grid-connected hybrid renewable energy system for rural electrification in Liquiça Municipality. Using HOMER Pro, four configurations were modeled: (i) hybrid system with Combined Heat and Power (CHP) and battery, (ii) hybrid system with CHP only, (iii) hybrid system with battery only, and (iv) hybrid system without CHP and battery. Results indicate that the configuration without CHP and battery yields the lowest Net Present Cost (USD 1.67 million) and Levelized Cost of Energy (USD 0.0669/kWh). However, systems with CHP integration demonstrate superior environmental performance. The hybrid system with CHP and without battery achieved the highest renewable fraction (92.7%), while the configuration with CHP and battery resulted in the most significant reduction in CO2 emissions (701,634 kg/ year). This study highlights the trade-offs between economic cost, sustainability, and grid dependence. Its novelty is comparing CHP and battery integration under Timor-Leste’s unique energy landscape, offering actionable insights for small island developing states transitioning toward cleaner energy systems.
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	9th International Conference on Clean Electrical Power 9 2025年6月 査読有り最終著者
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	2025 IEEE Power Electronics Society International Decentralized Energy Access Symposium (IDEAS) 1-6 2025年1月7日 査読有り最終著者
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	2024 IEEE International Conference on Electrical Systems for Aircraft, Railway, Ship Propulsion and Road Vehicles & International Transportation Electrification Conference (ESARS-ITEC) 1-6 2024年11月26日 査読有り最終著者This paper is focused on solving the existing practices for charging a new Lead-acid battery set before actually using it for signalling related operations and power circuits of diesel locomotives in Railways. The primary objective is to use renewable energy sources during the charging cycle and also utilize the energy waste during the discharging cycle. Instead of wasting that energy, we can transfer it to the grid to generate revenue from it or utilize it to meet the demand of DC load of a railway station. For the charge cycle, a PV panel is used during the day and a single-phase grid is used during the night to charge the battery set in this proposed Simulink model. For the discharge cycle, grid and DC loads are used to discharge the battery set. To replace the existing manual process, a state flow control logic is designed to work according to the standard process of initial charging a battery set. It is observed that the proposed method can save around 4910.902 MWh of energy compared to the existing practice taking place in Indian Railways.
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	2024 IEEE International Conference on Electrical Systems for Aircraft, Railway, Ship Propulsion and Road Vehicles & International Transportation Electrification Conference (ESARS-ITEC) 1-6 2024年11月26日 査読有り最終著者
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	2024 13th International Conference on Renewable Energy Research and Applications (ICRERA) 673-678 2024年11月9日 査読有り最終著者
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	International Council on Electrical Engineering Conference (O-065) 2024年7月 査読有り最終著者
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	International Council on Electrical Engineering (O-064) 2024年7月 査読有り最終著者
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	Energies 2024年3月15日 査読有り最終著者The transition towards environmentally friendly transportation solutions has prompted a focused exploration of energy-saving technologies within railway transit systems. Energy Storage Systems (ESS) in railway transit for Regenerative Braking Energy (RBE) recovery has gained prominence in pursuing sustainable transportation solutions. To achieve the dual-objective optimization of energy saving and investment, this paper proposes the collaborative operation of Onboard Energy-Storage Systems (OESS) and Stationary Energy-Storage Systems (SESS). In the meantime, Non-dominated Sorting Genetic Algorithm-II (NSGA-II) is applied to optimize the ESS capacity and reduce its redundancy. The simulation is programmed in MATLAB. The results show that the corporation of OESS and SESS offers superior benefits (70 kWh energy saving within 30 min operation) compared to using SESS alone. Moreover, the OESS plays a significant role, emphasizing its significance in saving energy and investment, therefore presenting a win–win scenario. It is recommended that the capacity of OESS be designed to be two to three times that of SESS. The findings contribute to the ongoing efforts in developing more sustainable and energy-efficient transportation solutions, with implications for the railway industry’s investment and broader initiatives in energy saving for sustainable urban mobility.
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	2024 IEEE 18th International Conference on Advanced Motion Control (AMC) 2024年2月28日 査読有りThis paper is focussed to solve the optimal train control problem using Pseudospectral method and application of Dynamic Programming. The primary objective in Energy-Efficient Train Control is to generate optimum speed profile under the given speed and gradient constraints so that the train reaches the destination within the allotted time. In this proposed methodology, the state and control variables are approximated using a global polynomial and collocation is performed at Legendre-Gauss-Lobatto points. Further, the transformed problem is solved using Dynamic Programming. The advantage of obtaining global optimum with Dynamic Programming is combined with possibility of reducing the calculation time by employing the Pseudospectral method is investigated. The choice of number of collocation points and its effect on the quality of optimum speed trajectory and computation times are provided in the simulation results. It is observed that the proposed method converges faster when compared with compared to Dynamic Programming performed in time domain.
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	2023 26th International Conference on Electrical Machines and Systems (ICEMS) 2023年11月5日 査読有り最終著者This paper addresses the challenge of optimizing the capacity and energy management of energy storage system (ESS) in rail transit systems, with a focus on the utilization of regenerative braking energy (RBE) generated by train braking. The system utilizes a hybrid energy storage system (HESS) consisting of superconducting magnetic energy storage (SMES) and battery to exploit the advantages of both ESS. Traditional methods have limitations in solving capacity redundancy problem. To address this issue, a cooperative optimization approach based on non-dominated sorting genetic algorithm-II (NSGAII) and mixed-integer linear programming (MILP) is proposed in this paper. By optimizing the capacity of the HESS via NSGA-II, the dual-objective optimization targeting expenditure and RBE utilization rate is achieved. MILP optimizes the input and output power of the HESS to meet various energy balance requirements. Simulation results demonstrate that the proposed approach effectively balanced system operating expenditure and RBE utilization, exploring the optimal configuration of HESS and ensuring power system stability and reliability at the same time.
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	Electrical Engineering in Japan 2023年10月2日 責任著者Abstract The energy consumption of a battery‐powered train in an interstation depends on the running time and state of energy (SOE) at departure. In this paper, we develop an optimization method of train timetables to minimize energy consumption in line with several stations. The variables in this proposed optimization model are running, dwell, and charging times as real numbers and places of charging facilities as binaries. Additionally, we conducted a case study using the real‐world light rail transit (LRT) route, vehicle, and onboard battery model to confirm the effectiveness. In the case study, the proposed method can optimize the timetable and placement of charging facilities by considering the track gradient and battery SOE.
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	International Council on Electrical Engineering (ICEE23JY-220) 2023年7月4日 査読有り
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	International Council on Electrical Engineering (ICEE23JY-122) 2023年7月4日 査読有り最終著者
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	Mechanical Engineering Journal 10(3) 22-00360 2023年6月 査読有り責任著者The timetable of urban rail greatly affects its daily energy consumption. To improve the utilization of renewable energy between trains using timetabling has become an effective way to reduce energy consumption. Previous studies ignore or simplify the modelling of traction power supply network, which failed to accurately describe the flow of energy between trains through the power network. This paper proposed an optimisation method of energy efficiency timetabling considering the power flow of traction power supply network. First, an urban rail transit DC traction network model is established, and the current-vector iterative method is used to characterize the energy consumption. Then, a train timetable optimisation model is proposed to minimize the total energy consumption of the traction network system by adjusting the dwell time and section running time. The genetic algorithm is used to solve the optimisation problem. Finally, simulation result shows that the proposed method can accurately characterize the energy flow and effectively reduce the total energy consumption of the urban rail transit.
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	IEEJ Journal of Industry Applications 12(3) 517-523 2023年5月1日 査読有り
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	2023 IEEE International Conference on Electrical Systems for Aircraft, Railway, Ship Propulsion and Road Vehicles & International Transportation Electrification Conference (ESARS-ITEC) 2023年3月29日 査読有り最終著者Besides operation, railway operators are tending to focus on energy saving from construction recently, which can lead to cost saving. Among them, the most representative means are energy saving slope and section running time optimisation. This paper proposed an energy economy method that coordinating optimise the section running time and the energy saving slope of gradient. The double layer optimisation model, includes model of train energy efficient operation and the coordinating optimisation model, is be formulated. Dynamic programming and traverse calculation are used to solve the optimal solution, respectively. The result shows the energy saving slop not always effectively and the coordinating optimisation can significantly improve the energy saving effect.
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	25th International Conference on Electrical Machines and Systems 2022年12月2日 査読有り最終著者
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	25th International Conference on Electrical Machines and Systems 2022年12月2日 査読有り最終著者
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	25th International Conference on Electrical Machines and Systems 2022年12月1日 査読有り最終著者
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	Energies 15(17) 6244-6244 2022年8月26日 査読有り最終著者This paper presents automatic software for E-liked shaped contactless inductive power transfer (CIPT) device study and design that provides attended-free, multiple-case auto-generating and auto-deploying analysis in one go. It provides visualized and listed results in a design space or for optimizing solutions. To satisfy the demand for static and dynamic charging devices, the software provides specific cores, such as EE-, EI-, IE-, and II-shaped, with or without legs as optional core structures. The software contains three main parts: a user-friendly interface, analytic approaches providing grid analysis that represent the general performance in a designated parameter range, and optimal analysis for multi-objective optimization using a genetic algorithm (GA). The post-analysis processor converts the analysis results to easy-to-read outputs. Users can customize various parameters, such as core type, structural size, circuit configuration, materials, and analysis setting. Automatic functions, such as resistance and compensation calculation, are available for the convenience of the user. By applying one approach, or by combining them in a specific order, the software achieves designs that satisfy the user’s demands within the user-provided range. The software is built in Python and collaborates with a finite element method (FEM) solver, which is JMAG in this paper. Some examples are given to demonstrate the performance of the software.
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	2022 International Power Electronics Conference, IPEC-Himeji 2022 -ECCE Asia- (18F3-3) 1885-1891 2022年5月 査読有り
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	IEEJ Transactions on Industry Applications 142(7) 2-3 2022年
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	24th International Conference on Electrical Machines and Systems (ICEMS 2021) 297-301 2021年11月 査読有り最終著者
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	The 23rd International Conference on Electrical Machines and Systems (ICEMS) 2073-2077 2020年11月27日 査読有り最終著者
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	Urban Rail Transit 291-309 2020年9月29日 査読有り最終著者
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	IEEJ Journal of Industry Applications 8(4) 586-591 2019年7月1日 査読有り最終著者責任著者
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	the 8th International Conference on Railway Operations Modelling and Analysis (RailNorrköping 2019) 2019年6月17日 査読有り最終著者
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	Electrical Engineering in Japan 205(1) 26-35 2018年10月1日 最終著者責任著者
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	Energies 11(8) 1970-1970 2018年7月30日 査読有り最終著者Utilization of wireless power transfer in light rail transits is seen as one solution for electrification of lines. The main advantage of this supply system is the reduction of installation; moreover, the alignment between the transmitter coil in the track and the receiver coil in the train should be perfect in order not to affect the power transfer. To reduce the effects of misalignment on the input and output electric parameters of the system, a new planar core and coil design, called hybrid intercore coil, is proposed. The proposed design uses a magnetic material layer between the windings in the inner half of the coil to create a non-uniform magnetic field distribution, which makes the system more robust against the effects of coil misalignment on the system current and voltage. Simulations with finite element method software were conducted to compare designs. The results show that the proposed design is less susceptible to the effects of misalignment and is more efficient. Prototype cores were constructed to verify the simulation results. Measurements show a smaller input overcurrent and output overvoltage when operating in resonance mode. The proposed design reduced the effects of coil misalignment on electrical parameters.
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	24th International Conference on Electrical Engineering (ICEE 2018) (G4-2087) 2018年7月25日 査読有り最終著者
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	ELECTRICAL ENGINEERING IN JAPAN 202(3) 22-32 2018年2月 最終著者
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	IEEE Transactions on Sustainable Energy 9(1) 74-85 2018年1月1日 査読有り
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	RENEWABLE & SUSTAINABLE ENERGY REVIEWS 81 149-160 2018年1月 査読有り
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	IEEE Region 10 Annual International Conference, Proceedings/TENCON 2017- 1433-1438 2017年12月19日 査読有り最終著者
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	Electric Power Components and Systems 45(17) 1881-1891 2017年10月21日 査読有り
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	2017 20th International Conference on Electrical Machines and Systems, ICEMS 2017 (668) 1-6 2017年10月2日 査読有り
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	RENEWABLE & SUSTAINABLE ENERGY REVIEWS 73 1138-1159 2017年6月 査読有り最終著者
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	IEEE Transportation Electrification Conference and Expo Asia-Pacific (AF0075) 1-7 2016年6月3日 査読有り最終著者
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	電気学会誌 136(10) 655-658 2016年 招待有り筆頭著者<p>1.はじめに クルマは,多くの人にとって最も身近な乗り物であるが,我が国では交通事故により毎年数千人もの死者が発生している。これまで,安全装置の進歩に加え,シートベルトや飲酒運転の罰</p>
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	2016 IEEE INTERNATIONAL CONFERENCE ON INTELLIGENT RAIL TRANSPORTATION (ICIRT) 482-486 2016年 査読有り最終著者
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	2016 IEEE INTERNATIONAL CONFERENCE ON INTELLIGENT RAIL TRANSPORTATION (ICIRT) 469-475 2016年 査読有り最終著者
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	2016 INTERNATIONAL CONFERENCE ON ELECTRICAL SYSTEMS FOR AIRCRAFT, RAILWAY, SHIP PROPULSION AND ROAD VEHICLES & INTERNATIONAL TRANSPORTATION ELECTRIFICATION CONFERENCE (ESARS-ITEC) 1-6 2016年 査読有り最終著者
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	2016 INTERNATIONAL CONFERENCE ON ELECTRICAL SYSTEMS FOR AIRCRAFT, RAILWAY, SHIP PROPULSION AND ROAD VEHICLES & INTERNATIONAL TRANSPORTATION ELECTRIFICATION CONFERENCE (ESARS-ITEC) 1-9 2016年 査読有り
 
主要なMISC
55主要な書籍等出版物
10講演・口頭発表等
167- 
	令和6年度 鉄道電気セミナー 2024年9月 日本鉄道電気技術協会 招待有り低炭素化の有効策として、大掛かりな機器更新等を必要とせず、低コストで即効性が高い方策、具体的には、運転方法と列車ダイヤの工夫による省エネを取り上げる。しかし、それには分野横断的なアプローチが必要であり、普段の分野毎の実務に取り入れるのは容易ではない。本講演ではまず、運転やダイヤの工夫による省エネ化について説明し、実装例についても少々紹介した後、実務への適用可能性について議論を深めたい。
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	1st Japan-China Symposium on Railway Technology 2024年8月8日 Nihon University
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	2nd IITD-Sophia Workshop on Transportation Science and Technology-Part B Sustainable Urban Transportation 2024年7月3日 Sophia University and IIT Delhi
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	IIT Delhi & IEEE VTS Delhi Chapter 2024年4月5日 IEEE VTS Delhi Chapter 招待有り
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	1st Sophia University - IITD Workshop on Transportation Science and Technology 2024年4月4日 Sophia University and IIT Delhi
 
主要な担当経験のある科目(授業)
18- 
	2024年9月 - 現在制御基礎 (上智大学)
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	2018年4月 - 現在Power Electroincs (上智大学)
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	2016年10月 - 現在発変電工学 (千葉大学)
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	2015年 - 現在モータドライブシステムI・II (上智大学)
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	2014年 - 現在電気エネルギー管理と制御 (上智大学)
 
主要な所属学協会
4主要な共同研究・競争的資金等の研究課題
16- 
	日本学術振興会 科学研究費 2023年4月 - 2026年3月
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	日本学術振興会 科学研究費助成事業 基盤研究(C) 2019年4月 - 2022年3月
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	独立行政法人 科学技術振興機構 研究成果最適展開支援プログラム 2014年1月 - 2015年12月
 
