何金良,曾 嵘. 电力系统接地技术[M]. 北京:科学出版社,2007:1. HE Jinliang, ZENG Rong. Grounding technologies for power system[M]. Beijing, China: Science Press, 2007: 1.
[2]
Nor N M, Haddad A, Griffiths H. Characterization of ionization phenomena in soils under fast impulses[J]. IEEE Transactions on Power Delivery, 2006, 21(1): 353-361.
[3]
Nor N M, Haddad A, Griffiths H. Determination of threshold electric field EC of soil under high impulse currents[J]. IEEE Transactions on Power Delivery, 2005, 20(3): 2108-2113.
[4]
Nor N M. Ionisation gradient of low resistivity soils and liquids[C]∥17 th International Zurich Symposium on Electromagnetic Compatibility. Singapore City, Singapore: IEEE, 2006: 409-412.
[5]
Nor N M. Effect of enhancement materials when mixed with sand under high impulse conditions[C]∥8 th International Conference on Properties and applications of Dielectric Materials. Bali, Indonesia: IEEE, 2006: 916-919.
[6]
Nor N M. Simulation of earthing systems under high impulse conditions[C]∥8 th International Conference on Properties and Applications of Dielectric Materials. Bali, Indonesia: IEEE, 2006: 347-352.
[7]
Visacro S, Alipio R, Vale M H M, et al . The response of grounding electrodes to lightning currents: the effect of frequency-dependent soil resistivity and permittivity[J]. IEEE Transactions on Electromagnetic Compatibility, 2011, 53(2): 401-406.
[8]
Visacro S. A comprehensive approach to the grounding response to lightning currents[J]. IEEE Transactions on Power Delivery, 2007, 22(1): 381.
[9]
Visacro S, Alipio R. Frequency dependent of soil parameters: experimental results, predicting formula and influence on lightning response of grounding electrodes[J]. IEEE Transactions on Power Delivery, 2012, 27(2): 927-935.
[10]
Mohamad N N, Ramli A. Electrical properties of dry soil under high impulse currents[J]. Journal of Electrostatics, 2007, 65(8): 500-505.
[11]
Idris N A, Nor N M, Ahmad H. Effects of moisture contents in soil and impulse polarity of earth electrode under high impulse conditions[C]∥8 th International Conference on Properties and Applications of Dielectric Materials. Bali, Indonesia: IEEE, 2006: 822-827.
[12]
杨财伟,司马文霞,袁 涛,等. 冲击电流下接地极屏蔽效应的试验研究[J]. 高电压技术,2008,34(12):2609-2614. YANG Caiwei, SIMA Wenxia, YUAN Tao, et al . Experimental analysis on shielding effect of the grounding electrodes under impulse current[J]. High Voltage Engineering, 2008, 34(12): 2609-2614.
[13]
司马文霞,雷超平,袁 涛,等. 改善冲击散流时地中电场分布的接地降阻试验[J]. 高电压技术,2011,37(9):2294-2301. SIMA Wenxia, LEI Chaoping, YUAN Tao, et al . Experimental study on grounding resistance reduction based on improved grounding electric field distribution induced by the diffuser of impulse current[J]. High Voltage Engineering, 2011, 37(9): 2294-2301.
[14]
袁 涛,雷超平,司马文霞,等. 提高接地极散流效率的冲击接地降阻分析[J]. 电工技术学报,2012,27(11):278-284. YUAN Tao, LEI Chaoping, SIMA Wenxia, et al . Analysis of grounding resistance reduction effect based on enhancing impulse current leakage efficiency[J]. Transactions of China Electrotechnical Society, 2012, 27(11): 278-284.
[15]
夏长征,陈慈萱,文习山,等. 伸长接地极冲击接地电阻计算[J]. 高电压技术,2001,27(5):59-63. XIA Changzheng, CHEN Cixuan, WEN Xishan, et al . Computation of impulse grounding resistance of extended grounding electrode[J]. High Voltage Engineering, 2001, 27(5): 59-63.
[16]
Li J L, Yuan T, Yang Q, et al . Numerical and experimental investigation of grounding electrode impulse-current dispersal regularity considering the transient ionization phenomenon[J]. IEEE Transactions on Power Delivery, 2011, 26(4): 2647-2658.
[17]
李景丽,袁 涛,杨 庆,等. 考虑土壤非线性的接地网有限元分析[J]. 高电压技术,2011,37(1):249-256. LI Jingli, YUAN Tao, YANG Qing, et al . Analysis of grounding grid by finite element method in consideration of soil nonlinear characteristics[J]. High Voltage Engineering, 2011, 37(1): 249-256.
[18]
李景丽,袁 涛,杨 庆,等. 考虑土壤电离动态过程的接地体有限元模型[J]. 中国电机工程学报,2011,31(22):149-157. LI Jingli, YUAN Tao, YANG Qing, et al . Finite element model of grounding system considering soil dynamic ionization[J].Proceedings of the CSEE, 2011, 31(22): 149-157.
[19]
甘 艳,阮江军,陈允平. 一维有限元与三维有限元耦合法在接地网特性分析中的应用[J]. 电网技术,2004,28(9):62-66. GAN Yan, RUAN Jiangjun, CHEN Yunping. Application of unidimensional finite element method(FEM) coupled with three dimensional FEM in characteristics analysis of grounding meshi property[J]. Power System Technology, 2004, 28(9): 62-66.
[20]
Leonid D G, Markus H. Frequency dependent and transient characteristics of substation grounding systems[J]. IEEE Transactions on Power Systems, 1997, 12(1): 172-178.
[21]
邹 军,郭 剑,张 波,等. 基于空频两域双内插的地网暂态快速计算[J]. 中国电机工程学报,2005,25(18):121-125. ZOU Jun, GUO Jian, ZHANG Bo, et al . Fast approach on grounding transient calculation based on MBPE in both frequency domain and spatial domain[J]. Proceedings of the CSEE, 2005, 25(18): 121-125.
[22]
Nekhoul B, Guerin C, Labie P, et al . A finite element method for calculating the electromagnetic fields generated by substation grounding systems[J]. IEEE Transactions on Magnetics, 1995, 31(3): 2150-2153.
[23]
Stochniol A. A general transformation for open boundary finite element method for electromagnetic problems[J]. IEEE Transactions on Magneics, 1992, 28(2): 1679-1681.
[24]
Anton H, Mladen T. The simulation of the soil ionization phenomenon around the grounding system by the finite element method[J]. IEEE Transactions on Magnetic, 2006, 42(4): 867-870.