Evaluation of Relation between Distance and Insolation Fluctuation Independence based on Coherence and Ensemble Average of Insolation Fluctuations at Two Points
Author:
Affiliation:
1. Dept. of Electrical Eng. and Comp. Sci., 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
Link
https://www.jstage.jst.go.jp/article/ieejpes/131/1/131_1_29/_pdf
Reference6 articles.
1. (1) N. Kawasaki, T. Oozeki, K. Otani, K. Kitamura, H. Sugihara, S. Nishikawa, and K. Kurokawa: “An Evaluation Method of Area-dependency Equalization of Output Fluctuation from Distributed PV System by Using Frequency Analysis—area and number of PV systems”, Proc. of JSES/JWEA Joint Conf., No. 51 (2005) (in Japanese)
2. (2) S. Yanagawa, T. Kato, A. Tabata, and Y. Suzuoki: “Evaluating Influence of Power Output Fluctuation of Photovoltaic Power Generation Systems on LFC based on Multiple Observation of Insolation”, IEEJ Trans. PE, Vol. 123, No. 12, pp. 1504-1512 (2003-12) (in Japanese)
3. (3) A. Murata, H. Yamaguchi, and K. Otani: “An Approximation of the Smoothing Effect on the Output Variation of Photovoltaic Power Generation Systems Installed Densely in a Bounded Area”, IEEJ Trans. PE, Vol. 127, No. 11, pp. 1190-1198 (2007-11) (in Japanese)
4. (4) T. Kato and Y. Suzuoki: “A Study on Estimation of Average Power Output Fluctuation of Clustered Photovoltaic Power Generation Systems in Urban District of a Few km2”, IEEJ Trans. PE, Vol. 130, No. 2, pp. 214-222 (2010-2) (in Japanese)
5. (5) A. Murata, H. Yamaguchi, and K. Otani: “A Method to Estimate the Output Fluctuation of Many Photovoltaic Power Generation Systems Dispersed in a Wide Area”, IEEJ Trans. PE, Vol. 127, No. 5, pp. 645-652 (2007-5) (in Japanese)
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