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Digital Filter Performance for Zero Crossing Detection in Power Quality Embedded Measurement Systems

机译:电力质量嵌入式测量系统中零交叉检测的数字滤波性能

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Power quality analysis involves the measurement of quantities that characterize the power supply waveforms such as RMS value, frequency, harmonic and inter-harmonic distortion or the presence of transients. The measurement of these quantities is regulated by internationally accepted standards from IEEE or IEC. In particular, for the evaluation of frequency and RMS values, the standard suggests the detection of the waveform zero crossings. Thus, accurate zero crossing detection is of utmost importance in power quality measurements. The undesirable effects of noise, harmonics and transients can be mitigated by filtering of the acquired waveforms, which induces a frequency dependent delay in the processed waveforms. This paper presents a comparative analysis between two types of filters. A comparative analysis is performed between the use of a fixed nominal delay and a frequency corrected delay. Additionally, the effect of the presence of noise and harmonics in the delay compensation is presented.
机译:电力质量分析涉及测量表征电源波形的量,例如RMS值,频率,谐波和谐波间失真或瞬态的存在。这些数量的测量由IEEE或IEC的国际接受的标准调节。特别地,对于评估频率和RMS值,标准表明波形零点的检测。因此,精确的零交叉检测在电力质量测量中至关重要。可以通过过滤所获取的波形来缓解噪声,谐波和瞬变的不希望的影响,这引起了处理的波形中的频率相关延迟。本文介绍了两种类型的过滤器之间的比较分析。在使用固定的标称延迟和频率校正延迟之间进行比较分析。另外,介绍了噪声和谐波在延迟补偿中的效果。

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