TY - GEN
T1 - Advanced islanding operation method integrating multiple power supplies including photovoltaic power generation
AU - Yoshinaga, Jun
AU - Hirohashi, Wataru
AU - Hayashi, Yasuhiro
AU - Sato, Satoshi
AU - Ohashi, Makoto
AU - Miyake, Jiro
AU - Tsuchiya, Shizuo
PY - 2016
Y1 - 2016
N2 - This study focuses on stand-alone power operation in a house during a blackout. The purpose of this type of operation, known as islanding, is to balance the power supply with load demand fluctuation, and to ensure its long-term sustainability. Therefore, we used multiple forms of power supply such as a battery energy storage system (BESS), PV generator, and a home energy management system (HEMS) to control the load of appliances. The four types of power generation equipment (the PV system, BESS, electric vehicle (EV), and fuel cell (FC)) have different characteristics in terms of their output power, capacity, and response time, etc. In consideration of these output properties and the response time of the power generation equipment, we implemented control to enable the islanding operation to continue, which was verified to be effective even in a limited power supply situation.
AB - This study focuses on stand-alone power operation in a house during a blackout. The purpose of this type of operation, known as islanding, is to balance the power supply with load demand fluctuation, and to ensure its long-term sustainability. Therefore, we used multiple forms of power supply such as a battery energy storage system (BESS), PV generator, and a home energy management system (HEMS) to control the load of appliances. The four types of power generation equipment (the PV system, BESS, electric vehicle (EV), and fuel cell (FC)) have different characteristics in terms of their output power, capacity, and response time, etc. In consideration of these output properties and the response time of the power generation equipment, we implemented control to enable the islanding operation to continue, which was verified to be effective even in a limited power supply situation.
UR - http://www.scopus.com/inward/record.url?scp=85007609235&partnerID=8YFLogxK
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U2 - 10.1049/cp.2016.0766
DO - 10.1049/cp.2016.0766
M3 - Conference contribution
AN - SCOPUS:85007609235
SN - 9781785612022
T3 - IET Conference Publications
BT - IET Conference Publications
PB - Institution of Engineering and Technology
T2 - CIRED Workshop 2016
Y2 - 14 June 2016 through 15 June 2016
ER -