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Design of a DC Residual Current Sensor Based on the Improved DC Component Method

机译:基于改进直流分量法的直流剩余电流传感器设计

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Personal safety in low voltage direct current (LVDC) system is very important, while the occurrence of electric shock can be greatly reduced with the DC-residual current device (DCRCD). There are some defects in the application of DC component method based on magnetic modulation to make DCRCD. The DC component is not equal to zero after eliminating the leakage current signal, which may affect the subsequent detection of DC leakage and cause the malfunction of DC-RCD. In order to solve this problem, an improved DC component method was presented in this paper. A DC residual current sensor (DC-RCS) based on the single-core voltage-type magnetic modulation is designed. The DC-RCS is realized by adding two compensation circuits and a single-chip microcomputer. A detailed design procedure is described and an experimental prototype is used to validate it. The results show that the DC component can be compensated to approximately zero, thus the occurrence of malfunction can be effectively avoided.
机译:低压直流(LVDC)系统的个人安全非常重要,而DC-Residual Current Device(DCRCD)可以大大降低电击的发生。基于磁调制使DCRCD的DC分量方法应用了一些缺陷。消除漏电流信号后,DC分量不等于零,这可能会影响随后的直流泄漏检测并导致DC-RCD的故障。为了解决这个问题,本文提出了一种改进的DC分量方法。设计了基于单芯电压型磁调制的直流剩余电流传感器(DC-RCS)。通过添加两个补偿电路和单芯片微计算机来实现DC-RC。描述了详细的设计过程,使用实验原型来验证。结果表明,DC分量可以补偿到大约零,因此可以有效地避免出现故障的发生。

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