Design and Implementation of Low-Cost PMU for Off-Nominal Frequency and DDC in Compliance with IEEE C37.118 Standard

Ankur Singh Rana, K. Jnaneswar, Mouna Krishna Gadhiraju, N. Kumar, S. A. Wani, M. Thomas
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Abstract

The transition of the conventional power grid into the smart grid requires continuous monitoring of integrated grids speared over wide-area through Phasor Measurement Units (PMU). These PMUs additionally perform protection and state estimation functions in the smart grid. This paper discusses implementation of a new phasor estimation method to eliminate the effects of Decaying DC (DDC) component and off-nominal frequencies during the extraction of the phasors from a relaying signal. The practical implementation of the proposed method in a low-cost microcontroller (ESP32-WROOM-32 development board) in compliance with the requirements of IEEE C37.118.1a-2011 standard is also demonstrated. The analysis of various existing algorithms estimating the phasors is carried out. The microcontroller is programmed with the best among the analysed algorithm and its feasibility to function as a proper Phasor Measurement Unit is tested. The newly designed PMU is rigorously tested with different estimation methods compliant with IEEE C37.118a-2011 standard. The comparison of the proposed method with different phasor estimation algorithms is also discussed.
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符合IEEE C37.118标准的低成本非标称频率和DDC PMU的设计与实现
传统电网向智能电网的转变需要通过相量测量单元(PMU)对广域集成电网进行连续监测。这些pmu还在智能电网中执行保护和状态估计功能。本文讨论了一种新的相量估计方法的实现,以消除从继电器信号中提取相量时衰减DC分量和非标称频率的影响。并在符合IEEE C37.118.1a-2011标准要求的低成本微控制器(ESP32-WROOM-32开发板)上进行了实际实现。对现有的各种相量估计算法进行了分析。采用所分析算法中的最佳算法对单片机进行编程,并对其作为相量测量单元的可行性进行了测试。新设计的PMU采用符合IEEE C37.118a-2011标准的不同估计方法进行了严格测试。本文还讨论了该方法与不同相量估计算法的比较。
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