Design of the Wide-Frequency Measurement Algorithm Based on Unified Sampling

Yao Zhiqiang, Wu Yanpin, Chen Xin, Fan Chen, Zhang Haidong, Zhu Jiajia
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Abstract

This article addresses the problem of widespread harmonic frequency in the power grid caused by extensive integration of new energy sources into the new power system, which cannot be accurately measured by existing measurement and control equipment such as PMU. The article comprehensively applies transient quantities, phasors, effective values, and other algorithm models to design a wide-frequency measurement algorithm that supports cross-platform integration and deployment. The algorithm achieves unified measurement of power frequency, non-power frequency components, and oscillating power in the range of 0~2500Hz, enhances the detection capability of measuring devices for wide-frequency electrical quantities with different signal structures, and is deployed in multiple new energy power stations.
基于统一采样的宽频测量算法设计
本文解决了由于新能源广泛并入新电力系统而导致电网谐波频率普遍存在的问题,而现有的测控设备如PMU无法准确测量。本文综合运用暂态量、相量、有效值等算法模型,设计了一种支持跨平台集成部署的宽频测量算法。该算法实现了0~2500Hz范围内工频、非工频分量和振荡功率的统一测量,增强了测量装置对不同信号结构的宽频电量的检测能力,并在多个新能源电站中得到部署。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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