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- 2016
行波波头的参数识别方法在高压直流输电系统中的应用
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Abstract:
为了提高识别电压源换流器型高压直流输电(VSC-HVDC)系统中的行波波头的可靠性,提出了一种行波波头的参数识别方法。根据VSC-HVDC系统零模网络的分析结果,直流线路两端的系统可以等效为电容,利用保护安装处测得的零模电压和零模电流可以计算零模识别电容。当直流线路发生故障后,零模识别电容会在行波波头到达线路两端的时刻突变至等效电容,因此可以根据零模识别电容的突变时刻确定行波波头的到达时刻。仿真结果表明:对于全长为100 km的线路,采用行波波头的参数识别方法,故障定位的绝对误差小于200 m,说明该方法具有较高的识别精度。与传统的行波波头识别方法相比,文中方法的优势在于能够始终可靠识别VSC-HVDC系统中行波波头的到达时刻,不受电气量波形渐变和输电线路参数频变的影响,且适用于高阻接地故障,能够应用于VSC-HVDC直流线路区内接地故障的定位,因此具有一定的理论和实用价值。
In voltage source converter based high voltage direct current (VSC??HVDC) system, the zero??sequence network at both ends of the DC line can be equivalent to a parallel capacitor, which reduces the slope of voltage traveling waveform to difficultly identify the traveling wave head with electrical quantities. A method is proposed to identify the arriving time of traveling wave head via judging the sudden changing time of the calculated zero??sequence capacitance. The method is used to locate fault points in the DC line of VSC-HVDC system of 100 km, and the absolute location error can be limited within range of 200 m. The theoretical analysis and simulations show that the proposed method is reliable and accurate to identify the arriving time of the traveling wave head, especially, it is immune from the slow change of electrical quantities and the frequency dependent characteristics of DC lines and suitable for high resistance grounding cases
[1] | TANG Guangfu, HE Zhiyuan, PANG Hui. Research, application and development of VSC??HVDC engineering technology [J]. Automation of Electric Power Systems, 2013, 37(15): 3??14. |
[2] | [16]葛耀中. 新型继电保护和故障测距的原理与技术 [M]. 西安: 西安交通大学出版社, 2007: 181??182. |
[3] | [3]乐波, 梅念, 刘思源, 等. 柔性直流输电技术综述 [J]. 中国电业: 技术版, 2014(5): 43??47. |
[4] | XU Zheng, CHEN Hairong. Review and applications of VSC HVDC [J]. High Voltage Engineering, 2007, 33(1): 1??10. |
[5] | [5]汤广福, 贺之渊, 庞辉. 柔性直流输电工程技术研究、应用及发展 [J]. 电力系统自动化, 2013, 37(15): 3??14. |
[6] | [6]宋国兵, 蔡新雷, 高淑萍, 等. 高压直流输电线路故障定位研究综述 [J]. 电力系统保护与控制, 2012, 40(5): 133??137. |
[7] | [7]宋国兵, 周德生, 焦在滨, 等. 一种直流输电线路故障测距新原理 [J]. 电力系统自动化, 2007, 31(24): 57??61. |
[8] | SONG Guobing, ZHOU Desheng, JIAO Zaibin, et al. A novel fault location principle for HVDC transmission line [J]. Automation of Electric Power Systems, 2007, 31(24): 57??61. |
[9] | LI Dekun, SONG Guobing, GAO Shuping, et al. Study on automatic fault location for VSC??HVDC transmission lines based on one??terminal traveling wave [J]. Power System Technology, 2013, 37(4): 1128??1133. |
[10] | [14]XU Min, CAI Zexiang, LIU Yonghao, et al. A novel coordination scheme of wavefront and wave speed for HVDC travelling wave fault location [C]∥2011 International Conference on Advanced Power System Automation and Protection. Piscataway, NJ, USA: IEEE, 2011: 102??107. |
[11] | [15]靳幸福, 宋国兵, 徐海洋, 等. 利用模量模型识别的VSC??HVDC输电线路纵联保护新原理 [J]. 电力系统自动化, 2014, 38(10): 100??106. |
[12] | JIN Xingfu, SONG Guobing, XU Haiyang, et al. A novel pilot protection for VSC??HVDC transmission lines using modulus model identification [J]. Automation of Electric Power Systems, 2014, 38(10): 100??106. |
[13] | YUE Bo, MEI Nian, LIU Siyuan, et al. Overview of HVDC flexible [J]. China Electric Power: Technology Edition, 2014(5): 43??47. |
[14] | [4]徐政, 陈海荣. 电压源换流器型直流输电技术综述 [J]. 高电压技术, 2007, 33(1): 1??10. |
[15] | [1]汤广福. 基于电压源换流器的高压直流输电技术 [M]. 北京: 中国电力出版社, 2010: 1??3. |
[16] | [2]FLOURENTZOU N, AGELIDIS V G, DEMETRIADES G D. VSC??based HVDC power transmission systems: an overview [J]. IEEE Transactions on Power Electronics, 2009, 24(3): 592??602. |
[17] | SONG Guobing, CAI Xinlei, GAO Shuping, et al. Survey of fault location research for HVDC transmission lines [J]. Power System Protection and Control, 2012, 40(5): 133??137. |
[18] | [8]高淑萍, 索南加乐, 宋国兵, 等. 基于分布参数模型的直流输电线路故障测距方法 [J]. 中国电机工程学报, 2010, 30(13): 75??80. |
[19] | GAO Shuping, SUONAN Jiale, SONG Guobing, et al. Fault location method for HVDC transmission lines on the basis of the distributed parameter mode [J]. Proceedings of the CSEE, 2010 30(13): 75??80. |
[20] | [9]宋国兵, 李德坤, 褚旭, 等. 基于参数识别原理的VSC??HVDC输电线路单端故障定位 [J]. 电网技术, 2012, 36(12): 94??99. |
[21] | SONG Guobing, LI Dekun, CHU Xu, et al. One??terminal fault location for VSC??HVDC transmission lines based on principles of parameter identification [J]. Power System Technology, 2012, 36(12): 94??99.[10]蔡新雷, 宋国兵, 高淑萍, 等. 利用电流固有频率的VSC??HVDC直流输电线路故障定位 [J]. 中国电机工程学报, 2011, 31(28): 112??119. |
[22] | CAI Xinlei, SONG Guobing, GAO Shuping, et al. A novel fault??location method for VSC??HVDC transmission lines based on natural frequency of current [J]. Proceedings of the CSEE, 2011, 31(28): 112??119. |
[23] | [11]王少荣, 赵妍卉. 双极HVDC输电线路行波故障定位 [J]. 高电压技术, 2007, 33(7): 124??128. |
[24] | WANG Shaorong, ZHAO Yanhui. Traveling??wave fault location of double??pole HVDC transmission system [J]. High Voltage Engineering, 2007, 33(7): 124??128. |
[25] | [12]束洪春, 张敏, 张广斌, 等. ±800 kV直流输电线路单端行波故障定位的红绿色彩模式检测 [J]. 电工技术学报, 2010, 25(11): 155??163. |
[26] | SHU Hongchun, ZHANG Min, ZHANG Guangbin, et al. An RG color pattern detection of single??ended traveling wave fault location on ±800 kV UHVDC transmission lines [J]. Transactions of China Electrotechnical Society, 2010, 25(11): 155??163. |
[27] | [13]李德坤, 宋国兵, 高淑萍, 等. VSC??HVDC输电线路单端行波自动化故障定位方法研究 [J]. 电网技术, 2013, 37(4): 1128??1133. |