引用本文:杨伟涛,曾德辉,汪隆君,王钢,吴争荣,于力.逆变型分布式电源接入对小电阻接地系统馈线零序电流保护的影响[J].电力自动化设备,2018,(9):
YANG Weitao,ZENG Dehui,WANG Longjun,WANG Gang,WU Zhengrong,YU Li.Influence of inverter interfaced distributed generators on zero-sequence current protection for feeder of low resistance grounding system[J].Electric Power Automation Equipment,2018,(9):
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逆变型分布式电源接入对小电阻接地系统馈线零序电流保护的影响
杨伟涛1, 曾德辉1, 汪隆君1, 王钢1, 吴争荣2, 于力2
1.华南理工大学 电力学院,广东 广州 510640;2.南方电网科学研究院,广东 广州 510080
摘要:
逆变型分布式电源(IIDG)的接入改变了小电阻接地系统的接地故障特性,不仅使传统零序电流的计算方法不再适用,而且对馈线零序电流保护造成了不利的影响。通过分析IIDG的故障电流特性,建立了具有低电压穿越能力的PQ控制型IIDG故障等值模型;在含IIDG小电阻接地系统接地故障分析建模的基础上,提出了零序电流迭代求解算法,并利用MATLAB编写相应的求解程序,将计算结果与电力系统实时仿真系统(RTDS)的仿真结果进行比较,验证了所提算法的有效性和准确性;基于所建立的故障分析模型,揭示了IIDG的接入对小电阻接地系统馈线零序电流保护的影响机理,利用所提零序电流迭代求解算法求解不同故障情况下的馈线零序电流值,验证了理论分析的正确性。
关键词:  逆变型分布式电源  小电阻接地系统  PQ控制策略  低电压穿越  故障分析  馈线零序电流保护  继电保护
DOI:10.16081/j.issn.1006-6047.2018.09.024
分类号:TM771
基金项目:国家自然科学基金资助项目(51477057)
Influence of inverter interfaced distributed generators on zero-sequence current protection for feeder of low resistance grounding system
YANG Weitao1, ZENG Dehui1, WANG Longjun1, WANG Gang1, WU Zhengrong2, YU Li2
1.School of Electric Power, South China University of Technology, Guangzhou 510640, China;2.Electric Power Research Institute of China Southern Power Grid, Guangzhou 510080, China
Abstract:
The access of IIDG(Inverter Interfaced Distributed Generator) changes the grounding fault characteristics of low resistance grounding system, which not only makes the traditional calculation method of zero-sequence current no longer applicable, but also has a negative impact on the zero-sequence current protection of feeder. A PQ control strategy-based IIDG fault equivalent model with low voltage ride-through capability is established by analyzing the fault current characteristics of IIDG. Based on the analysis and modeling of grounding fault in the low resistance grounding system with IIDGs, an iterative solution algorithm of zero-sequence current is proposed. The solving procedure is compiled with MATLAB, and the calculative results are compared with the simulative results of the power system RTDS(Real-Time Digital Simulator) to verify the effectiveness and accuracy of the proposed algorithm. Based on the established fault analysis model, the influence mechanism of the IIDG access on the zero-sequence current protection of low resistance grounding system feeder is revealed. The zero-sequence currents of feeder under different fault conditions are calculated using the proposed iterative solution algorithm, which verifies the validity of the theoretical analysis.
Key words:  inverter interfaced distributed generators  low resistance grounding system  PQ control strategy  low vol-tage ride-through  failure analysis  zero-sequence current protection of feeder  relay protection

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