Impact of wideband noise on synchrophasor, frequency and ROCOF estimation

D. Macii, D. Fontanelli, D. Petri, G. Barchi
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引用次数: 6

Abstract

Next-generation Phasor Measurement Units (PMU) must exhibit superior performances in order to meet the accuracy requirements of active distribution grids. Till now most researchers have focused their efforts on mitigating the impact of intrinsic amplitude and phase fluctuations as well as harmonic and inter-harmonic disturbances, since they are usually the largest sources of intrinsic uncertainty. The effect of wideband noise, both in amplitude and in phase, is instead often regarded as negligible, provided that the resolution of the data acquisition stage is chosen properly and both sampling jitter and synchronization uncertainty are kept strictly below worst-case limits. This paper extends and complements the results already available in the literature, by providing a general framework to evaluate the effect of wideband noise on synchrophasor, frequency and Rate of Change of Frequency (ROCOF) estimation. The results of this analysis show that, when the influence of the other disturbances is reduced, the impact of noise can become not only significant, but even critical for compliance (especially on frequency and ROCOF estimates) with respect to the limits reported in the IEEE Standards C37.118.1-2011 and C37.118.1a-2014.
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宽带噪声对同步相量、频率和ROCOF估计的影响
为了满足有源配电网的精度要求,下一代相量测量单元(PMU)必须表现出优异的性能。到目前为止,大多数研究人员都把精力集中在减轻本征振幅和相位波动以及谐波和谐波间干扰的影响上,因为它们通常是本征不确定性的最大来源。相反,只要数据采集阶段的分辨率选择得当,采样抖动和同步不确定性都严格控制在最坏情况下,宽带噪声的幅度和相位影响通常被认为可以忽略不计。本文通过提供一个总体框架来评估宽带噪声对同步相量、频率和频率变化率(ROCOF)估计的影响,扩展和补充了文献中已有的结果。该分析的结果表明,当其他干扰的影响降低时,噪声的影响不仅会变得显著,而且对于符合IEEE标准C37.118.1-2011和c37.118.1 -2014中报告的限制(特别是在频率和ROCOF估计上)甚至至关重要。
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