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Implementation and performance evaluation of a broadband digital harmonic vector voltmeterud ud

机译:宽带数字谐波矢量电压表的实现与性能评估 ud ud

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摘要

A broadband digital harmonic vector voltmeter proposed previously and studied theoretically by the authors was implemented using a special-purpose, random sampling strategy, to avoid the bandwidth limitations due to the finite conversion time of the sample-and-hold and analog-to-digital-conversion (S/H-ADC) devices. The experimental results have shown that the bandwidth of the instrument is not limited by the finite conversion time of S/H-ADC devices, since good accuracy can be achieved even when the average sampling frequency is much lower than the signal bandwidth. The amplitude and phase uncertainty, with sinusoidal test signals up to 1 MHz and an average sampling rate of 10 kHz, was found to be lower than 3% and 0.03 rad, respectively. For more careful testing of the broadband performance of our instrument, we also carried out two-frequency, variable order harmonic measurements, which showed good accuracy (amplitude error less than 1.5% and phase error less than 0.03 rad) with harmonics up to 300 kHz. Reasonable accuracy (i.e., sufficient to correctly reconstruct the actual signal waveform) was also found with a highly distorted square-wave signal
机译:先前提出并由作者进行理论研究的宽带数字谐波矢量电压表是使用专用随机抽样策略实现的,以避免由于采样保持和模数转换时间有限而造成的带宽限制转换(S / H-ADC)设备。实验结果表明,该仪器的带宽不受S / H-ADC器件有限转换时间的限制,因为即使平均采样频率远低于信号带宽,也可以实现良好的精度。发现正弦测试信号高达1 MHz且平均采样率为10 kHz时,幅度和相位不确定性分别低于3%和0.03 rad。为了更仔细地测试仪器的宽带性能,我们还进行了两频,可变阶次谐波测量,该测量结果显示了良好的精度(幅度误差小于1.5%,相位误差小于0.03 rad),谐波高达300 kHz 。对于高度失真的方波信号,还发现了合理的精度(即足以正确地重建实际信号波形)

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