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An Interference-Rejection Strategy for Measurement of Small Current Under Strong Interference With Magnetic Sensor Array

机译:磁传感器阵列强干扰下小电流测量的抗干扰策略

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摘要

Traditional infrastructure and instrumentation methods in power system are transforming to cater the needs of modern and smart grid applications. In this process, contactless broad range electric current measurement has emerged as a hot research field. Under this background, an improved strategy of current measurement has been proposed in this paper to solve the problem of large crosstalk error in scenarios where the measured current is much smaller than the interfering current. In the proposed strategy, two magnetic sensors with a piece of curved magnetic shielding layer constitute the measurement structure, in which the effect contributed by the interference is damped by summing up the magnetic field detected by the two sensors with the opposite sensitive direction and by the magnetic shielding. It has been demonstrated by experiments that this improved strategy can estimate the targeted current with the minimum drift of 0.19 A when the real value of the targeted current is 0 A. The finite-element analysis proves that the deviation is 0.21 A, while the interfering current changes from 1 to 10 kA. Based on these results, the proposed easily installed structure with high accuracy proves its immense potential application of current measurement in smart grid.
机译:电力系统中的传统基础设施和仪表方法正在发生变化,以满足现代和智能电网应用的需求。在此过程中,非接触式宽范围电流测量已成为一个热门研究领域。在此背景下,本文提出了一种改进的电流测量策略,以解决在被测电流远小于干扰电流的情况下串扰误差大的问题。在所提出的策略中,两个带有一块弯曲的磁屏蔽层的磁传感器构成了测量结构,其中,通过将两个方向相反的敏感传感器检测到的磁场相加,并通过将两个传感器所检测到的磁场相加,可以减弱由干扰产生的影响。磁屏蔽。实验证明,当目标电流的实际值为0 A时,该改进策略可以估计目标电流,且最小漂移为0.19A。有限元分析证明,偏差为0.21 A,而干扰电流从1变为10 kA。基于这些结果,所提出的易于安装的高精度结构证明了其在智能电网中进行电流测量的巨大潜力。

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