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Modeling induction machines and core-form transformers in unbalanced distribution circuits

机译:在不平衡配电电路中对感应电机和铁心形式的变压器建模

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Three phase power distribution systems often experience voltage imbalance due to unbalanced loading of the system. The unbalanced load flow is increasingly being used in all aspects of distribution system analysis. Many three phase devices, particularly induction motors and transformers, behave differently when connected to an unbalanced supply. Advanced models can be necessary to properly account for these differences. This paper proposes models for induction motors and core-form transformers suitable for load flow simulation. The models are based on symmetrical component theory. The induction motor models involve an additional iteration loop, and are validated against EMTP time domain simulations. Case studies are presented that show the impact of using these models in unbalanced distribution system conditions.
机译:由于系统负载不平衡,三相配电系统经常会遇到电压不平衡的情况。配电系统分析的各个方面越来越多地使用不平衡的潮流。当连接到不平衡电源时,许多三相设备(特别是感应电动机和变压器)的行为会有所不同。可能需要高级模型来适当考虑这些差异。本文提出了适用于潮流模拟的感应电动机和铁心形式变压器的模型。这些模型基于对称分量理论。感应电动机模型包含一个附加的迭代循环,并针对EMTP时域仿真进行了验证。案例研究表明,在不平衡的配电系统条件下使用这些模型的影响。

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