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Power Frequency Interference and Suppression in Measurement of Power Transmission Tower Grounding Resistance

机译:输电塔接地电阻测量中的工频干扰与抑制

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摘要

Due to the electromagnetic induction between transmission lines and the associated grounding wires, power frequency current causes flow into the ground network via the metallic tower, which may interfere with grounding resistance measurements. This paper analyzes the mechanisms of this interference, and shows that power frequency interference becomes stronger at phase-wire transposition towers. Grounding resistance measurement by the variable frequency (VF) method has been proven to be effective in dealing with power frequency interference. However, the test equipment based on the VF method is always deactivated when the external interference voltage exceeds a preset level in order to avoid false readings. This paper aims at tackling the problem by introducing a reverse phase cancellation (RPC) method, which acquires and processes the interference signal before generating a cancelling signal with the same amplitude and frequency and a phase which is exactly opposite in polarity. This paper proves that the RPC method represents an excellent improvement over the VF method since it retains the advantages of VF and avoids the trip-out of test equipment due to excessive interference.
机译:由于传输线和相关的接地线之间的电磁感应,工频电流导致通过金属塔流入接地网络,这可能会干扰接地电阻的测量。本文分析了这种干扰的机制,并发现相线换位塔的工频干扰变得更强。事实证明,通过可变频率(VF)方法测量接地电阻可有效应对工频干扰。但是,当外部干扰电压超过预设水平时,将始终停用基于VF方法的测试设备,以避免错误读数。本文旨在通过引入反相抵消(RPC)方法来解决该问题,该方法在生成具有相同幅度和频率且极性完全相反的相位的抵消信号之前,先获取并处理干扰信号。本文证明了RPC方法是对VF方法的卓越改进,因为它保留了VF的优点,并且避免了由于过度干扰而引起的测试设备跳闸。

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