基于磁旋转角积分重构的电流测量方法

Huasheng Shui, Yufei Rong, Taiji Dong, Yu Sun, Wendi Yan
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引用次数: 0

摘要

针对基于光强检测模式的光电流传感器中正弦函数对磁转角的非线性限制,本文提出了一种基于磁转角积分重构的电流测量方法,从而避免了磁转角近似线性测量带来的较大电流测量误差。该方法通过三角函数的不断变形消除含有磁旋转角的正弦信号导数中的余弦项,然后通过积分重构磁旋转角。实验结果表明,在0.20臂~ 2.40臂的电流范围内,积分重构方法的电流值测量误差小于1.30%,测量误差小于近似线性测量方法,磁旋转角与电流之间存在良好的线性关系,线性度为99.987%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Current measurement method based on integral reconstruction of magnetic rotation angle
In view of the nonlinear limitation of the sine function on the magnetic rotation angle in the optical current sensor based on the light intensity detection mode, this paper proposes a current measurement method based on the integral reconstruction of the magnetic rotation angle, thus avoiding the large current measurement error caused by the approximate linear measurement of the magnetic rotation angle. In this method, the cosine term in the derivative of the sine signal containing the magnetic rotation angle is eliminated by the constant deformation of the trigonometric function, and then the magnetic rotation angle is reconstructed by integration. The experimental results show that within the current range of 0.20 Arms to 2.40 Arms, the measurement error of the current value of the integral reconstruction method is less than 1.30%, the measurement error is less than the approximate linear measurement method, and there is a good linear relationship between the magnetic rotation angle and the current, with a linearity of 99.987%.
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