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Development of a Nonintrusive True-RMS AC Voltage Measurement Probe

机译:开发非识别真正的RMS交流电压测量探针

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The design and development of a new nonintrusive-type true-rms ac voltage measurement probe are presented in this paper. The measurement circuit of the capacitively coupled nonintrusive voltage sensor is designed to provide an output that is directly proportional to the rms value of unknown ac voltage V-X, which contains the power frequency (50 or 60 Hz) component along with the typical harmonic frequency components due to nonlinear loads. This is accomplished by a specially designed autobalancing signal conditioning circuit. The existing noncontact probes are designed for a set frequency and will not provide accurate rms value of a signal that has multiple frequency components. The output is independent of the coupling capacitance between the probe electrode and the insulated wire/cable under measurement. Thus, the sensor has low sensitivity to the variation due to the probe-to-wire capacitance, good linearity (0.95%), and accuracy (0.88%) over a range of voltages (0-1000 V) tested. Various parameters that affect the performance of the probe are analyzed, quantified, and discussed in this paper. A prototype of the probe along with the proposed autobalancing circuit has been designed and developed. The prototype has been tested in detail to evaluate the accuracy, linearity, and repeatability. The results obtained established the practicality of the proposed scheme.
机译:本文提出了新的非识别式True-RMS交流电压测量探头的设计和开发。电容耦合的非识别电压传感器的测量电路被设计为提供与未知交流电压Vx的RMS值成正比的输出,其包含功率频率(50或60 Hz)部件以及由于典型的谐波频率分量非线性载荷。这是通过专门设计的自动化信号调节电路来实现的。现有的非接触式探针设计用于设定频率,并且不会提供具有多个频率分量的信号的精确RMS值。输出与探针电极和绝缘线/电缆之间的耦合电容无关。因此,由于探针到线电容,良好的线性度(0.95%)和精度(0-1000 V)测试的精度(0.95%)和精度(0.88%),传感器对变化具有低灵敏度。分析,量化了影响探针性能的各种参数,并在本文中讨论。设计和开发了探头的原型以及所提出的自动化电路。已经详细测试了原型以评估准确性,线性度和可重复性。结果确定了拟议计划的实用性。

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