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Influence of overhead transmission line on grounding impedance measurement of substation

机译:架空输电线路对变电站接地阻抗测量的影响

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摘要

How to precisely measure the grounding impedance of large-scale substations is a fundamental guarantee for the safe operation of power systems. If the ground wires were connected to the grounding grid, these ground wires would shunt a part of the injected measuring current and allow the measured grounding impedance to be smaller than the actual impedance of the grounding system. Based on an actual 500-kV grounding system, this paper discusses how to analyze the influence of the overhead ground wire on the measured grounding impedance and how to obtain the real grounding impedance of the grounding system. A numerical analysis model considering the grounding system, the transmission lines, towers, and their grounding devices, based on the multilayer soil model analyzed from field test data of apparent soil resistivity, was constructed to analyze the influence of ground wires and tower grounding resistances on grounding impedance, and the general effects of different parameters, such as tower impedance, grounding impedance, and circuits of transmission lines, were analyzed. The real grounding impedance of the substation with connected overhead ground wires was validated, and some useful results have been obtained, based on the field-measured values and numerical analysis.
机译:如何精确测量大型变电站的接地阻抗是保证电力系统安全运行的根本保证。如果将接地线连接到接地网,则这些接地线将分流一部分注入的测量电流,并使测得的接地阻抗小于接地系统的实际阻抗。本文基于实际的500 kV接地系统,讨论了如何分析架空地线对测得的接地阻抗的影响以及如何获得接地系统的实际接地阻抗。基于从表观土壤电阻率的现场测试数据分析的多层土壤模型,建立了考虑接地系统,输电线路,铁塔及其接地装置的数值分析模型,以分析地线和铁塔接地电阻对接地系统的影响。分析了接地阻抗,以及塔阻抗,接地阻抗和传输线电路等不同参数的一般影响。基于现场测量值和数值分析,验证了架空接地线连接的变电站的实际接地阻抗,并获得了一些有用的结果。

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