齐郑, 赵昕一, 陈艳波. 暂态与稳态相不对称信号相结合的配电网单相接地故障感知技术[J]. 高电压技术, 2022, 48(4): 1264-1276. DOI: 10.13336/j.1003-6520.hve.20210836
引用本文: 齐郑, 赵昕一, 陈艳波. 暂态与稳态相不对称信号相结合的配电网单相接地故障感知技术[J]. 高电压技术, 2022, 48(4): 1264-1276. DOI: 10.13336/j.1003-6520.hve.20210836
QI Zheng, ZHAO Xinyi, CHEN Yanbo. Single-phase Grounding Fault Sensing Technology in Distribution Network Based on Transient and Steady State Phase Asymmetrical Signals[J]. High Voltage Engineering, 2022, 48(4): 1264-1276. DOI: 10.13336/j.1003-6520.hve.20210836
Citation: QI Zheng, ZHAO Xinyi, CHEN Yanbo. Single-phase Grounding Fault Sensing Technology in Distribution Network Based on Transient and Steady State Phase Asymmetrical Signals[J]. High Voltage Engineering, 2022, 48(4): 1264-1276. DOI: 10.13336/j.1003-6520.hve.20210836

暂态与稳态相不对称信号相结合的配电网单相接地故障感知技术

Single-phase Grounding Fault Sensing Technology in Distribution Network Based on Transient and Steady State Phase Asymmetrical Signals

  • 摘要: 相不对称信号作为一种包含丰富故障信息且易于获取的信号,越来越多地应用于配电网故障定位技术。但由于配电网中负荷电流的干扰以及不同故障类型的信号特征差异巨大,应用相不对称信号的定位技术受到极大挑战。为了解决以上问题,提出一种利用暂态和稳态相不对称信号相结合的单相接地故障感知技术。配电网发生单相接地故障后,故障路径与非故障路径上的故障分量电流在暂态、稳态过程中会出现差异,且在不同接地类型情况下差异程度有所改变。根据以上特征,所提出的技术结合改进S变换增加故障路径与非故障路径之间的差异,利用谐波含量作为判据自适应辨识故障类型,并选取相应定位技术实现故障定位。利用物理试验平台数据对感知技术进行模拟仿真,验证了其可靠性和实用性。故障感知技术可同时满足配电网中性点不接地和经消弧线圈接地系统多种单相接地故障类型的定位需求;同时该技术能实现就地判断,不依赖通信系统适应性强。

     

    Abstract: As a kind of signal which contains rich fault information and is easy to obtain, phase asymmetric signal is frequently used in distribution network fault location technology. However, The interference of load current in distribution network and the huge difference of signal characteristics of different fault types pose greatly challenges to the application of phase asymmetric signal location technology. In order to solve the above problems, this paper proposes a single-phase grounding fault sensing technology based on the combination of transient and steady-state phase asymmetric signals. After single-phase grounding fault occurs in distribution network, the fault component currents of fault path and non-fault path will be different in transient and steady processes, and the degree of difference will change in different grounding types. According to the above characteristics, in this method, the improved S transform and variance method are combined to increase the difference between the fault path and the non-fault path, the harmonic content is adopted as the criterion to identify the fault type adaptively, and the location method is selected to realize the fault location. Moreover, the data of physical test platform are adopted to simulate the positioning technology, and the reliability and practicability of this technology are verified. The sensing technology can simultaneously meet the positioning requirements of multiple single-phase grounding fault types in distribution network with ungrounded neutral point and grounded by arc suppression coil. At the same time, this technology can realize local judgment without relying on communication system, and has strong practicability.

     

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