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Noncontact operation-state monitoring technology based on magnetic-field sensing for overhead high-voltage transmission lines

机译:基于磁场感测的非接触式操作状态监测技术,用于高压传输线的磁场感测

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This paper proposed a novel noncontact technology of operation-state monitoring based on magnetic-field sensing for high-voltage transmission lines, which can simultaneously measure both electrical and spatial parameters in real time. This technology was derived from research on themagnetic-field distribution at the ground levelwhen the transmission lines operate in different states, including sagging, galloping, and current imbalance. Two typical models of high-voltage three-phase transmission lines were simulated, and the resulting magnetic fields were calculated. The correlation between the magnetic-field variations and the operation states were analyzed. Based on such correlation, a source reconstructionmethod was developed to reconstruct the spatial and electrical parameters from the magnetic field emanated by the overhead transmission lines. The reconstruction results for the 500-kV and 220-kV transmission lines verify the feasibility and practicality of this novel noncontact transmission-line monitoring technology based on magnetic-field sensing.
机译:本文提出了一种基于高压传输线的磁场感测的磁场检测的新型非接触技术的操作 - 状态监测,可以实时测量电气和空间参数。该技术是从地面水平的基础磁场分布的研究导出,当传输线在不同状态下操作时,包括下垂,疾驰和当前不平衡。模拟两个高压三相传输线的两个典型模型,并计算得到的磁场。分析了磁场变型与操作状态之间的相关性。基于这种相关性,开发了一种源重建方法以重建由开销传输线散发的磁场的空间和电参数。 500-kV和220 kV传输线的重建结果验证了基于磁场感测的这种新型非接触式传输线监测技术的可行性和实用性。

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