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首页> 外文期刊>IEEE Transactions on Power Delivery >Grounding resistance of buried electrodes in multi-layer earth predicted by simple voltage measurements along each surface-a theoretical discussion
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Grounding resistance of buried electrodes in multi-layer earth predicted by simple voltage measurements along each surface-a theoretical discussion

机译:通过沿每个表面的简单电压测量预测多层地球中埋入式电极的接地电阻-理论讨论

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摘要

A power system protection earth is modeled as an inhomogeneous conducting medium with multiple horizontal layers. For known layer conductivities and thickness, the voltage distribution and grounding resistance have been computed efficiently using an equivalent image method. In this paper, the reverse sequence is proposed. Without explicitly knowing the layer conductivities, thickness and number of layers, the equivalent images are determined by the voltage measurement results along the earth surface. Then these images are linearly translated to compute the underground voltage profiles and grounding resistance of buried electrodes. Such surface measurements are simple and inexpensive, and should give very accurate results based on the experience of applying these images in the microwave area.
机译:电力系统保护接地建模为具有多个水平层的不均匀导电介质。对于已知的层电导率和厚度,已使用等效图像方法有效地计算了电压分布和接地电阻。本文提出了反向序列。在没有明确知道层电导率,厚度和层数的情况下,等效图像由沿地表的电压测量结果确定。然后,将这些图像进行线性平移,以计算地下电压曲线和掩埋电极的接地电阻。这种表面测量既简单又便宜,并且应根据将这些图像应用于微波区域的经验得出非常准确的结果。

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