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An automatic calibrator for wattmeters with harmonic analysis capability

机译:具有谐波分析功能的电表自动校准器

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摘要

This paper deals with a three-phase phantom-power generator, which is designed for calibrating digital wattmeters with harmonic analysis capability. The calibration of such instruments is a critical task due to the lack of suitable calibrators. Fortunately, the calibration procedure can be limited to the first harmonic components when digital wattmeters are employed to characterise electrical machines, so that also simple calibrator design can be adopted. This paper describes a three-phase calibrator arrangement which is able to generate an arbitrary spectrum up to 5 kHz and a phantom power variable up to 3 kVA per phase. The uncertainty on the power associated to the first harmonic components is of about 0.1 % in nonsinusoidal conditions. The calibrator employs a Direct Digital Synthesis technique, so that a frequency change of the output signal can be obtained without modifying the sampling frequency. Such a technique also permits to generate the frequency modulated signals that are often encountered at the output of static power converters that feed electrical machines.
机译:本文研究了一种三相幻象电源发生器,该发生器用于校准具有谐波分析功能的数字电表。由于缺少合适的校准器,此类仪器的校准是一项关键任务。幸运的是,当使用数字瓦特表来表征电机时,可以将校准程序限于一次谐波分量,从而也可以采用简单的校准器设计。本文介绍了一种三相校准器装置,该装置能够产生高达5 kHz的任意频谱以及每相高达3 kVA的幻像功率变量。在非正弦条件下,与一次谐波分量相关的功率的不确定度约为0.1%。该校准器采用直接数字合成技术,因此无需修改采样频率即可获得输出信号的频率变化。这样的技术还允许产生在给电机供电的静态功率转换器的输出处经常遇到的调频信号。

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