Curriculum Vitaes
Profile Information
- Affiliation
- Professor, Institute of Space and Astronautical Science, Japan Aerospace Exploration Agency
- Degree
- Ph.D.(The University of Tokyo)
- researchmap Member ID
- 1000144488
Research Interests
2Education
4Committee Memberships
2-
Jun, 2008 - Jun, 2010
-
Apr, 2005 - Mar, 2006
Papers
90-
Smart Materials and Structures, Aug 1, 2024 Peer-reviewedLead authorCorresponding author
-
Smart Materials and Structures, 30(6) 065014-065014, Jun 1, 2021 Peer-reviewedLead authorCorresponding authorAbstract We propose and demonstrate a novel method to enhance vibration harvesting based on surge-induced synchronized switch harvesting on inductor (S3HI). S3HI allows harvesting of a large amount of energy even from low-amplitude vibrations by inducing a surge voltage during the voltage inversion of a synchronized switch harvesting on inductor (SSHI). The surge voltage and the voltage amplification from the conventional voltage inversion improve energy harvesting. S3HI modifies SSHI by both rewiring the circuit without adding components and using a novel switching pattern for voltage inversion, thus maintaining the simplicity of SSHI. We propose a novel switching strategy and circuit topology and analyze six methods that constitute the S3HI family, which includes traditional S3HI and high-frequency S3HI. We demonstrate that the six methods suitably harvest energy even from low-amplitude vibrations. Nevertheless, the harvestable energy per vibration cycle depends on the switching pattern and storage-capacitor voltage. The use of the proposed switching strategy, which allows energy harvesting before energy-dissipative voltage inversion, substantially increases the harvestable energy per vibration cycle. In the typical case considered in this study, the said increase is on the order of 11%–31% and 15%–450% compared to the traditional and existing high-frequency S3HI methods, respectively, depending on the storage-capacitor voltage. Additionally, the proposed circuit can be used as a traditional circuit. It could be considered a promising alternative to S3HI methods owing to its potential auto-reboot capability, which is not found in traditional S3HI circuit.
-
Sensors and Actuators A: Physical, 281 55-66, Oct, 2018 Peer-reviewed
-
Mechanical Systems and Signal Processing, 117, Aug, 2018 Peer-reviewed
-
JOURNAL OF INTELLIGENT MATERIAL SYSTEMS AND STRUCTURES, 28(7) 888-906, Apr, 2017 Peer-reviewedLead authorCorresponding author
Misc.
44Presentations
425-
宇宙科学技術連合講演会講演集, Oct, 1991
-
宇宙科学技術連合講演会講演集, Oct, 1991
-
Extendible and Extendible/Expandable Nozzle System with High Expansion Ratio for M-V Launch Vehicle.宇宙科学技術連合講演会講演集, Oct, 1991
-
第6回宇宙構造物シンポジウム, Dec, 1990
-
17th International Symposium on Space Technology and Science, May, 1990
-
17th International Symposium on Space Technology and Science (ISTS), May, 1990
-
17th International Symposium on Space Technology and Science (ISTS), May, 1990
-
17th International Symposium on Space Technology and Science (ISTS), May, 1990
-
17th International Symposium on Space Technology and Science (ISTS), May, 1990
-
17th International Symposium on Space Technology and Science (ISTS), May, 1990
-
17th International Symposium on Space Technology and Science (ISTS), May, 1990
-
31st AIAA/ASME/ASCE/AHS/ASC Structures, Structural Dynamics and Materials Conference, Apr, 1990Vibration suppression of large space structures is a difficult and important problem because in many cases their damping is expected to be low while the shape accuracy requirement is stringent. An active vibration suppression concept, by varying the stiffness of a new type of variable-stiffness structural member, is proposed and investigated. Two different types of control logic are proposed for realistic multi-degree-of-freedom structures with multiple variable-stiffness members. Numerical simulations demonstrate the effectiveness of the proposed strategy. Active vibration suppression experiments of truss structures are performed by using a variable-stiffness member and the proposed control logic, demonstrating the effectiveness of the proposed technique in actual structures.
Professional Memberships
4Works
2Research Projects
13-
科学研究費助成事業 基盤研究(C), 日本学術振興会, Apr, 2020 - Mar, 2023
-
Grants-in-Aid for Scientific Research, Japan Society for the Promotion of Science, Apr, 2014 - Mar, 2017
-
Grants-in-Aid for Scientific Research, Japan Society for the Promotion of Science, Apr, 2008 - Mar, 2010
-
Grants-in-Aid for Scientific Research, Japan Society for the Promotion of Science, 2007 - 2008
-
Grants-in-Aid for Scientific Research, Japan Society for the Promotion of Science, 2006 - 2007