Minimum Capacity of NaS Battery according to Capacity of PV System in a Microgrid under 30 min Power Balancing Control

Author:

Shimakage Toyonari1,Sone Akihito2,Sumita Jiro1,Kato Takeyoshi2,Suzuoki Yasuo2

Affiliation:

1. R&D Headquarters, NTT Facilities, Inc.

2. Graduate School of Engineering, Nagoya University

Publisher

Institute of Electrical Engineers of Japan (IEE Japan)

Subject

Electrical and Electronic Engineering,Energy Engineering and Power Technology

Reference9 articles.

1. (2) T. Shimakage, K. Nishioka, J. Sumita, T. Kato, and Y. Suzuoki: “Supply and Demand Control of Distributed Generators in a Microgrid for New Energy—Operational result at the Airport City site—”, The Papers of Joint Technical Meeting on Power Engineering and Power Systems Engineering, IEE Japan, PE-08-135, PSE-08-144, pp. 83-87 (2008) (in Japanese)

2. (3) T. Shimakage, J. Sumita, N. Uchiyama, T. Kato, and Y. Suzuoki: “Supply and Demand Control of Distributed Generators in a Microgrid for Penetration of New Energy”, IEEJ Trans. PE, Vol. 128, No. 1, pp. 143-150 (2008-1) (in Japanese)

3. (4) T. Shimakage, J. Sumita, K. Ogawa, T. Kato, and Y. Suzuoki: “The Battery Capacity for the Reduction of PV System Output Fluctuation in a Microgrid”, 2008 National Convention Record IEE Japan, 6-234, p. 394 (2008) (in Japanese)

4. (5) T. Shimakage, J. Sumita, T. Kato, and Y. Suzuoki: “Effect of Differences in Control Characteristics on Microgrid Power Balancing”, Proc. of the 20th Annual Conference of Power & Energy Society, IEE Japan (2009) (in Japanese)

5. (6) T. Hayashi, A Takeuchi, Y. Nozaki, and T. Shimakage: “Configuration Design for Fuel-cell-based Energy Network”, Technical Report of IEICE, Vol. 108, No. 25, pp. 13-18 (2008) (in Japanese)

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