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Surge Characteristics of a Buried Bare Wire
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Fundamental Considerations and Impulse Impedance of Grounding Grids
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R. Verma, D. Mukhedkar, “Fundamental Considerations and Impulse Impedance of Grounding Grids,” IEEE Transactions on Power Apparatus and Systems, Vol. PAS-100, No. 3, pp. 1023–1030, March 1981.
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Impulse Impedance of Buried Ground Wire
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R. Verma, D. Mukhedkar, “Impulse Impedance of Buried Ground Wire,” IEEE Transactions on Power Apparatus and Systems, Vol. PAS-99, No. 5, pp. 2003–2007, September/October 1980.
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Impedance Characteristics of Large Tower Footings to a 100 s Wide Square Wave of Current
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E. J. Rogers, “Impedance Characteristics of Large Tower Footings to a 100 s Wide Square Wave of Current,” IEEE Transactions on Power Apparatus and Systems, Vol. PAS-100, No. 1, p. 66–71, January 1981.
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B. R. Gupta, B. Thapar, “Impulse Impedance of Grounding Grids,” IEEE Transactions on Power Apparatus and Systems, Vol. PAS-99, No. 6, pp. 2357–2362, November/December 1980.
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Impulse and 60-Cycle Characteristics of Driven Grounds, Part I
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March
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P. L. Bellaschi, “Impulse and 60-Cycle Characteristics of Driven Grounds, Part I,” AIEE Transactions, Vol. 60, pp. 123–128, March 1941.
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P. L. Bellaschi, R. E. Armington, and A. E. Snowden, “Impulse and 6o-Cycle Characteristics of Driven Rods, Part II,” AIEE Transactions, Vol. 61, pp. 349–363, 1942.
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Impulse and 60-Cycle Characteristics of Driven Grounds, Part III
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P. L. Bellaschi, R. E. Armington, “Impulse and 60-Cycle Characteristics of Driven Grounds, Part III,” AIEE Transactions, Vol. 62, pp. 334–345, 1943.
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A Highly Efficient Method for Calculating Transmission Line Transients
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September/October
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A. Ametani, “A Highly Efficient Method for Calculating Transmission Line Transients,” IEEE Transactions on Power -Apparatus and Systems, Vol. PAS-95, no. 5, pp. 1545–1551, September/October 1976.
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Application of a Digital Signal Analyzer to the Measurement of Power System Ground Impedances
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April
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I. D. Lu, R. M.Shier, “Application of a Digital Signal Analyzer to the Measurement of Power System Ground Impedances,” IEEE Transactions on Power Apparatus and Systems” Vol. PAS-100, No. 4, pp. 1916–1922, April 1981.
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Analysis of Grounding Systems
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March
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A. P. Meliopoulos, R. P. Webb, and E. B. Joy, “Analysis of Grounding Systems,” IEEE Transactions on Power Apparatus and Systems, Vol. PAS-100, no. 3, pp. 1039–1048, March 1981.
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Digital Computer Solution of Electromagnetic Transients in Single and Multiphase Networks
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April
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H. W. Dommel, “Digital Computer Solution of Electromagnetic Transients in Single and Multiphase Networks,” IEEE Transactions on Power Apparatus and Systems, Vol. PAS-88, No. 4, pp. 388–399, April 1969.
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Experimental Study of Transient Ground Impedances
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Paper 81 SM 399-5, presented at the 1981 IEEE-PES Summer Meeting, Portland, Oregon
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R. Kosztaluk, M. Loboda, D. Mukhedkar, “Experimental Study of Transient Ground Impedances,” Paper 81 SM 399-5, presented at the 1981 IEEE-PES Summer Meeting, Portland, Oregon, 1981.
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Kosztaluk, R.1
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Field Measurements at Texas Valley Substation
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Georgia Institute of Technology, Atlanta, GA, May 12–14
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S. G. Patel, “Field Measurements at Texas Valley Substation,” Proceedings of the Workshop on High Voltage Power Systems Grounding, Georgia Institute of Technology, Atlanta, GA, May 12–14, 1982.
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