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Circular Array of Magnetic Sensors for Current Measurement: Analysis for Error Caused by Position of Conductor

机译:用于电流测量的电磁传感器的圆形阵列:分析由于导体位置引起的误差

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摘要

This paper analyzes the measurement error, caused by the position of the current-carrying conductor, of a circular array of magnetic sensors for current measurement. The circular array of magnetic sensors is an effective approach for AC or DC non-contact measurement, as it is low-cost, light-weight, has a large linear range, wide bandwidth, and low noise. Especially, it has been claimed that such structure has excellent reduction ability for errors caused by the position of the current-carrying conductor, crosstalk current interference, shape of the conduction cross-section, and the Earth’s magnetic field. However, the positions of the current-carrying conductor—including un-centeredness and un-perpendicularity—have not been analyzed in detail until now. In this paper, for the purpose of having minimum measurement error, a theoretical analysis has been proposed based on vector inner and exterior product. In the presented mathematical model of relative error, the un-center offset distance, the un-perpendicular angle, the radius of the circle, and the number of magnetic sensors are expressed in one equation. The comparison of the relative error caused by the position of the current-carrying conductor between four and eight sensors is conducted. Tunnel magnetoresistance (TMR) sensors are used in the experimental prototype to verify the mathematical model. The analysis results can be the reference to design the details of the circular array of magnetic sensors for current measurement in practical situations.
机译:本文分析了用于电流测量的磁传感器圆形阵列的由载流导体的位置引起的测量误差。磁性传感器的圆形阵列是交流或直流非接触式测量的有效方法,因为它成本低,重量轻,线性范围大,带宽大且噪声低。特别是,据称这种结构对于由载流导体的位置,串扰电流干扰,传导截面的形状以及地球磁场引起的误差具有优异的降低能力。但是,到目前为止,尚未详细分析载流导体的位置,包括不居中和不垂直。为了达到最小的测量误差,本文提出了一种基于向量内外积的理论分析方法。在提出的相对误差数学模型中,一个方程表示了非中心偏移距离,非垂直角度,圆半径和磁传感器的数量。进行了由四个和八个传感器之间的载流导体位置引起的相对误差的比较。在实验原型中使用隧道磁阻(TMR)传感器来验证数学模型。分析结果可为设计实际情况下用于电流测量的磁传感器圆形阵列的细节提供参考。

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