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Featured researches published by Matsuo Hidenori.


international telecommunications energy conference | 2014

Development of the mutual energy exchanging system between areas by the direct-current system which utilized renewable energy

Midori Nonogaki; Takaaki Kikuchi; Hirose Keiichi; Matsuo Hidenori; Takeda Takashi

This paper reports on an experimental study for the development of an energy exchanging system between areas based on direct current (DC) using renewable energy. It includes demonstrations that are being held at two sites in Japan: Obihiro City in Hokkaido and Yamagata City in Yamagata prefecture. The demonstration at the Obihiro site involves the development of elemental technologies needed for implementing a practical DC power feed, such as DC conversion equipment, DC peripheral devices, and a DC energy management system, and the construction of a DC microgrid based on photovoltaic (PV) power generation and storage batteries. The DC equipment developed here showed a 3-5% improvement in efficiency compared to existing alternating current (AC) equipment having the same functions. The demonstration at the Yamagata site involves the construction of a microgrid in each of three areas within the site and the development of an energy-exchanging system using both DC and AC interfaces. It includes energy-exchanging simulations using actual operational data and testing of facility-capacity reduction with a 40% reduction in storage battery capacity set as a target.


international telecommunications energy conference | 2014

The novel islanding power supply method for mutual power interchange with line-interactive uninterruptible power supply

Yuasa Kazufumi; Noritake Masatoshi; Matsuo Hidenori; Takeda Takashi; Kikuchi Takaaki; Hirose Keiichi

The interchange of power between power supply systems is proposed as a way to reduce the storage battery capacity required to compensate imbalances in power generation and demand. The results of simulations for calculating the expected reduction in required battery capacity in a constructed power supply system are also reported.


Archive | 2015

DC POWER SUPPLY SYSTEM, POWER SOURCE SUPPLY DEVICE, POWER SUPPLY CONTROL METHOD IN DC POWER SUPPLY SYSTEM, AND PROGRAM

Noritake Masatoshi; Tsumura Tetsushi; Matsuo Hidenori; Hirose Keiichi; Hayakawa Yoshiaki


Archive | 2005

FUSE WITH RUSH CURRENT SUPPRESSION FUNCTION AND CURRENT DISTRIBUTION DEVICE USING THIS

Takeda Takashi; Murakami Naoki; Matsuo Hidenori


Archive | 2014

POWER FEEDING SYSTEM AND POWER FEEDING METHOD

Atokawa Tomohito; Hirose Keiichi; Matsuo Hidenori


Archive | 2016

POWER SUPPLY SYSTEM, POWER SUPPLY QUALITY MONITORING DEVICE, POWER SUPPLY MONITORING METHOD, AND PROGRAM

Tsumura Tetsushi; Noritake Masatoshi; Matsuo Hidenori; Takeda Takanori


Archive | 2015

DIRECT-CURRENT FEEDING SYSTEM, DIRECT-CURRENT POWER SUPPLY DEVICE, AND FEEDING CONTROL METHOD

Noritake Masatoshi; Tsumura Tetsushi; Matsuo Hidenori; Hirose Keiichi; Hayakawa Yoshiaki


Archive | 2015

POWER MANAGEMENT SYSTEM, POWER MANAGEMENT METHOD AND SERVER

Ishibashi Hiroshi; Shimakage Toyonari; Yuasa Kazufumi; Matsuo Hidenori


Archive | 2016

POWER SUPPLY SYSTEM, POWER SUPPLY METHOD, AND PROGRAM

Noritake Masatoshi; Takeda Takashi; Matsuo Hidenori; Yuasa Kazufumi


Archive | 2016

POWER FEEDING SYSTEM, POWER CHARGE CALCULATION DEVICE, POWER FEEDING METHOD, POWER CHARGE CALCULATION METHOD, AND PROGRAM

Noritake Masatoshi; Takeda Takashi; Matsuo Hidenori; Yuasa Kazufumi

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