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Power Quality Analysis Framework for AC and DC Electrical Systems

机译:AC和DC电气系统的电力质量分析框架

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Analyzing and maintaining power quality in an electrical power system (EPS) is essential to ensure that power generation, distribution, and loads function as expected within their designated operating regimes. Standards such as MILSTD-704 and associated documents provide the framework for power quality metrics that need to be satisfied under varying operating conditions. However, analyzing these power quality metrics within a fully integrated EPS based solely on measurements of relevant signals is a different challenge that requires a separate framework containing rules for data acquisition, metric calculations, and applicability of metrics in certain operating conditions/modes. Many EPS employed throughout industry and government feature various alternating-current (ac) power systems. Ac systems have similar power quality metrics as direct-current (dc) systems, but also feature additional metrics for frequency and phase angle, which are part of the ac signal (unlike dc signals, for which frequency and phase angle have no meaning). Generally, the different signal components cannot be directly measured, hence it is necessary to introduce algorithms that extract amplitude, frequency, and phase angle information, which significantly complicates the overall power quality analysis process. The paper focuses on methods to determine the ac signal components from instantaneous time-domain measurements for three-phase power systems during post-processing. In addition, the methods and mathematical procedures required to determine ac power quality metrics defined in most standards are presented. A representative example is utilized to illustrate the individual metrics and algorithms that have been implemented in a power quality analysis toolbox.
机译:分析和维持电力系统中的电能质量(EPS)是必不可少的,以确保在其指定的操作系统内预期的发电,分布和负载功能。 MILSTD-704和相关文件等标准为需要在不同的操作条件下需要满足的电能质量指标提供框架。然而,仅基于相关信号的测量在完全集成的EPS内分析这些功率质量指标是一个不同的挑战,这需要一个单独的框架,其中包含数据采集,度量计算和在某些操作条件/模式中的指标的适用性的单独框架。在整个工业和政府中使用的许多EPS都具有各种交流(AC)电力系统。 AC系统具有与直流(DC)系统类似的电力质量指标,还具有额外的度量,用于频率和相位角,这是AC信号的一部分(与直流信号不同,频率和相位角没有意义)。通常,不能直接测量不同的信号分量,因此需要引入提取幅度,频率和相位角信息的算法,这显着使整体功率质量分析过程复杂化。本文侧重于在后处理期间从三相电力系统的瞬时时间域测量确定AC信号分量的方法。此外,还提出了确定大多数标准中定义的交流电源质量指标所需的方法和数学过程。使用代表性示例来说明已经在电力质量分析工具箱中实现的各个度量和算法。

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