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Magnetic Sensor Array-Based AC Current Measurement for Multiconductor Cables Using Evolutionary Computation Method

机译:基于电磁传感器阵列的演化计算法测量多芯电缆交流电流

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摘要

A novel and accurate AC current measurement method for multiconductor cables is proposed in this paper by employing magnetic sensor arrays and evolutionary algorithms. The positions of several conductors within the electrical cables are determined by the computing method. Then the currents in these conductors can be measured in real time by using a matrix multiplication computation. The mathematical model for estimating conductor currents is investigated considering two configurations, i.e., single conductor and multiconductors in the cable. Evolutionary computation methods are investigated and implemented to improve the computing accuracy. In particular, the performances of a variety of evolutionary algorithms in the current computation are compared. The differential evolution (DE) computation method is found outperforming other methods after conducting numerous simulation studies. Finally, comprehensive experiments are carried out by utilizing the DE method to validate the theoretical studies. The experimental results sufficiently verify the feasibility and reliability of the proposed AC current measurement method for multiconductor cables.
机译:利用磁传感器阵列和进化算法,提出了一种新颖,准确的多芯电缆交流电流测量方法。电缆内几个导体的位置通过计算方法确定。然后,可以通过使用矩阵乘法计算来实时测量这些导体中的电流。考虑了两种配置,即电缆中的单导体和多导体,研究了估算导体电流的数学模型。研究并实现了进化计算方法以提高计算精度。特别是,比较了当前计算中各种进化算法的性能。经过大量的仿真研究,发现差分演化(DE)计算方法的性能优于其他方法。最后,利用DE方法进行了综合实验,以验证理论研究。实验结果充分验证了所提出的多芯电缆交流电流测量方法的可行性和可靠性。

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