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Multi-indicator inference scheme for fuzzy assessment of power system transient stability

机译:电力系统暂态稳定性模糊评估的多指标推理方案

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摘要

A multi-indicator inference scheme is proposed in this paper to achieve an intuitive assessment of post-fault transient stability of power systems. The proposed scheme uses the fuzzy inference technique to classify the stability level as “safe,” “low-risk,” “high-risk,” and “danger.” A multi-criteria quality assessment method is first introduced. Several transient indicators are then proposed as assessment criteria. To select the effective indicators for assessment, correlation mining using univariate regression analysis is performed between each indicator and a critical clearance time (CCT)-based stability index. The fuzzy sets of indicators for different stability levels are then determined according to their correlations with the stability index. The weighting factors of indicators are also allocated according to their regression error in correlation mining. The proposed inference scheme is further demonstrated and its effectiveness is validated in case studies on IEEE 68-bus system and a 756-bus transmission system in China.
机译:本文提出了一种多指标推理方案,以实现对电力系统故障后暂态稳定的直观评估。提出的方案使用模糊推理技术将稳定性级别分类为“安全”,“低风险”,“高风险”和“危险”。首先介绍了一种多标准质量评估方法。然后提出了几种瞬态指标作为评估标准。为了选择有效的评估指标,在每个指标与基于关键清除时间(CCT)的稳定性指标之间进行了使用单变量回归分析的相关性挖掘。然后根据它们与稳定性指标的相关性,确定用于不同稳定性水平的指标的模糊集。指标的权重因子也根据相关挖掘中的回归误差进行分配。在中国的IEEE 68总线系统和756总线传输系统的案例研究中,进一步证明了所提出的推理方案,并验证了其有效性。

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