实验室环境和现场操作条件下PMU动态性能评估

Zhenyu Huang, J. Hauer, K. Martin
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引用次数: 35

摘要

捕捉系统动力学是相量测量的一个重要特征。为了确保PMU准确地反映系统的动态行为,必须对PMU的动态性能进行评估。PMU动态性能评价包括三个方面:PMU建模研究、实验室测试和现场评价。本文简要介绍了PMU的一般模型结构,然后从实际现场测量出发对PMU的动态性能进行了评价。现场评估的原因包括:(1)不适当的PMU现场设置会产生意想不到的相量测量;(2)许多条件在实验室环境中不容易产生。PMU现场评估包括时间同步、滤波导致的时间不一致、频率计算问题、寄生振荡/处理伪影等方面。实际的WECC测量实例将被展示。在实验室环境中探索动态PMU测试,特别关注PMU滤波特性。相量质量如何影响导出的系统动态特性将在本文的后半部分讨论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of PMU Dynamic Performance in Both Lab Environments and under Field Operating Conditions
Capturing system dynamics is one important feature of phasor measurements. To ensure PMU accurately reflect system dynamic behavior, one must evaluate the dynamic performance of a PMU. PMU dynamic performance evaluation includes three aspects: PMU modeling studies, laboratory testing and field evaluation. This paper briefly reviews the general PMU model structure, and then continues on PMU dynamic performance evaluation from actual field measurements. Reasons for field evaluation include: (1) inappropriate field settings of a PMU would generate unexpected phasor measurements; and (2) many conditions can not be easily produced in a lab environment. PMU field evaluation includes aspects like time synchronization, timing inconsistency due to filtering, frequency calculation issues, parasitic oscillations/processing artifacts, etc. Actual WECC measurement examples will be presented. Dynamic PMU testing in a lab environment is explored with a special focus on PMU filtering characteristics. How the phasor quality would impact derived system dynamic characteristics is addressed in the later part of this paper.
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