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Evaluating Measurement-Based Dynamic Load Modeling Techniques and Metrics

机译:评估基于测量的动态载荷建模技术和度量

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Wide-area data and algorithms in large power systems are creating new opportunities for implementation of measurement-based dynamic load modeling techniques. These techniques improve the accuracy of dynamic load models, which are an integral part of transient stability analysis. Measurement-based load modeling techniques commonly assume response error is correlated to system or model accuracy. Response error is the difference between simulation output and phasor measurement units (PMUs) samples. This paper investigates similarity measures, output types, simulation time spans, and disturbance types used to generate response error and the correlation of the response error to system accuracy. This paper aims to address two hypotheses: 1) can response error determine the total system accuracy? and 2) can response error indicate if a dynamic load model being used at a bus is sufficiently accurate? The results of the study show only specific combinations of metrics yield statistically significant correlations, and there is a lack of pattern of combinations of metrics that deliver significant correlations. Less than 20% of all simulated tests in this study resulted in statistically significant correlations. These outcomes highlight concerns with common measurement-based load modeling techniques, raising awareness to the importance of careful selection and validation of similarity measures and response output metrics. Naive or untested selection of metrics can deliver inaccurate and misleading results.
机译:大型电力系统中的广域数据和算法正在为实现基于测量的动态载荷建模技术创造新的机会。这些技术提高了动态载荷模型的准确性,这是瞬态稳定性分析的一个组成部分。基于测量的负载建模技术通常假设响应误差与系统或模型精度相关。响应误差是仿真输出和Phasor测量单元(PMU)样本之间的差异。本文调查了用于生成响应误差的相似度测量,输出类型,仿真时间跨度和干扰类型以及对系统精度的响应误差的相关性。本文旨在解决两个假设:1)可以响应误差确定总系统精度吗? 2)可以响应误差表示是否在总线上使用的动态负载模型足够准确?该研究的结果仅展示了特定的指标组合产生了统计上显着的相关性,并且缺乏具有显着相关性的度量组合的组合模式。该研究中少于所有模拟测试的20%导致统计学上的相关性。这些结果突出了基于常见的测量载荷建模技术的关注,提高了对仔细选择和验证相似度测量和响应输出指标的重要性的认识。 Naive或未经测试的指标选择可以提供不准确和误导性的结果。

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