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Exercising the Dynamic Range of Active Power Meters Under Nonsinusoidal Conditions

机译:在非正弦条件下行使有功电表的动态范围

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The present methods used to calibrate an active power or energy meter device under test (DUT) under nonsinusoidal conditions are based on a limited number of current and voltage waveforms and do not exercise the dynamic range of the DUT. After reviewing a method recently developed at the National Physical Laboratory (NPL) to exercise the dynamic range of a DUT under sinusoidal and nonsinusoidal conditions for specified current and voltage waveforms, the paper reports on the performance of the DUT under nonsinusoidal conditions measured using the NPL method. Experimental results: 1) verify theoretical predictions that the active power fractional full-scale (FS) error depends on both the phase-angle group between the current and voltage waveforms and the phase angle between the harmonics and the fundamental of both the current and voltage waveforms and 2) show that the active power fractional FS error for sinewave excitation can be larger than that for nonsinusoidal conditions.
机译:用于在非正弦条件下校准被测有功功率或电能表设备(DUT)的当前方法基于有限数量的电流和电压波形,并且不使用DUT的动态范围。在回顾了美国国家物理实验室(NPL)最近开发的一种方法来在指定的电流和电压波形的正弦和非正弦条件下行使DUT的动态范围之后,该论文报告了在使用NPL测量的非正弦条件下DUT的性能。方法。实验结果:1)验证理论预测,有功功率分数满量程(FS)误差取决于电流和电压波形之间的相角组以及谐波和电流和电压的基波之间的相角波形1和2)表明,正弦波激励的有功功率分数FS误差可能大于非正弦条件下的有功功率分数FS误差。

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