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用于直流配电系统应用的基于自振荡磁通门的电流传感器的设计与特性分析

Design and Characterization of a Self-Oscillating Fluxgate-Based Current Sensor for DC Distribution System Applications.

作者信息

Chen Wei, Chen Huaijie, Xu Haibo, Li Li

机构信息

The Key Laboratory of Smart Low-Voltage Apparatus and New Energy Application of Zhejiang Province, Wenzhou University, Wenzhou 325035, China.

School of Mechanical Engineering, Zhejiang University, Hangzhou 310007, China.

出版信息

Sensors (Basel). 2025 Apr 8;25(8):2360. doi: 10.3390/s25082360.

Abstract

Fluxgate-based current sensors are usually implemented for DC current detection, but their complex structure and circuits with large volume and high cost have been limiting their applications. This paper presents a low-cost sensor with a one-core-three-winding structure that can be suitable for integrated measurement in distribution system applications. Based on a self-oscillating scheme, the new sensor introduces an induction winding to suppress the noise caused by the transformer effect instead of adding more magnetic cores. The transmission and transfer functions of the sensor, based on nonlinear magnetization, are conducted for the qualitative and quantitative analysis. A prototype is fabricated and several specifications including linearity, small-signal bandwidth, output noise, and power-on repeatability are characterized. Experimental results show that the proposed sensor realizes an accuracy better than 0.15% with a range of 0-600 A. By implementing the proposed noise suppression method, the signal-to-ratio is improved from 19.55 dB to 48.88 dB. Compared with a traditional fluxgate sensor with a three-core-four-winding structure, the proposed sensor reduces the volume by 44.4% and the cost by 23.6%, indicating a good prospect for practical applications.

摘要

基于磁通门的电流传感器通常用于直流电流检测,但其结构复杂、电路体积大且成本高,这一直限制着它们的应用。本文提出了一种具有单芯三绕组结构的低成本传感器,适用于配电系统应用中的集成测量。基于自振荡方案,新型传感器引入了一个感应绕组来抑制由变压器效应引起的噪声,而不是增加更多磁芯。基于非线性磁化对传感器的传输和传递函数进行了定性和定量分析。制作了一个原型,并对包括线性度、小信号带宽、输出噪声和上电重复性在内的几个规格进行了表征。实验结果表明,所提出的传感器在0 - 600 A范围内实现了优于0.15%的精度。通过实施所提出的噪声抑制方法,信噪比从19.55 dB提高到48.88 dB。与具有三芯四绕组结构的传统磁通门传感器相比,所提出的传感器体积减小了44.4%,成本降低了23.6%,显示出良好的实际应用前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ce80/12030522/a1c6c87886d9/sensors-25-02360-g001.jpg

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