A Study on a Lightning-Surge Analysis Composite Model of a Reinforced Concrete Pole and a Grounding Electrode in Power Distribution Lines
Author:
Affiliation:
1. High voltage & Insulation Group, R&D Center, TEPCO
2. Department of Electrical & Electronic Media Engineering, SHONAN INSTITUTE OF TECHNOLOGY
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/126/7/126_7_669/_pdf
Reference11 articles.
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2. (2) S. Sekioka, H. Hayashida, T. Hara, and A. Ametani: “Development of A Nonlinear Grounding Resistance Model for High Impulse Currents”, T. IEE Japan, Vol. 118-B, No. 1, pp. 92-101 (1998-1) (in Japanese)
3. (3) Y. Yasuda, S. Kondo, T. Hara, K. Ikeda, Y. Sonoi, and Y. Furuoka: “Measurement of Soil-Ionization Characteristics of Grounding and its Analysis using Dynamic Grounding Model”, IEEJ Trans. PE, Vol. 123, No. 6, pp. 718-724 (2003-6) (in Japanese)
4. (4) J. Yoshinaga, M. Usui, T. Sonoda, S. Asakawa, and S. Sekioka: “Experimental Evaluation of Lightning-Surge Propagating in Distribution System and Customer's Facility”, IEEJ Trans. PE, Vol. 124, No. 4, pp. 588-596 (2004-4) (in Japanese)
5. (6) E. E. Oettle: “A New Estimation Curve for Predicting the Impulse Impedance of Concentrated Electrodes”, IEEE Trans., Vol. PWRD-3, No. 4, pp. 2020-2029 (1988)
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2. An Experimental Study of a Simulation Method for Calculating a Lightning Outage Rate of Distribution Lines;IEEJ Transactions on Power and Energy;2009
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4. A Study on an Analysis Model of Grounding Electrode for Power Distribution Lines Considering Transient Behavior;IEEJ Transactions on Power and Energy;2007
5. Observation Results of Lightning Performance in Distribution Lines;IEEJ Transactions on Power and Energy;2007
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