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Assessing the Accuracy of Balanced Power System Models in the Presence of Voltage Unbalance

机译:在电压不平衡存在下评估平衡电力系统模型的准确性

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Traditional models of electric power systems represent distribution systems with unbalanced three-phase network models and transmission systems with balanced single-phase-equivalent network models. This distinction poses a challenge for coupled models of transmission and distribution systems, which are becoming more prevalent due to the growth of distributed energy resources connected to distribution systems. In order to maintain a balanced network representation, transmission system models typically assume that the voltage phasors at the interface to the distribution system are balanced. Inaccuracies resulting from this assumption during unbalanced operation can lead to erroneous values for line currents in the transmission system model. This paper empirically quantifies the accuracy of this balanced operating assumption during unbalanced operating conditions for both a simple two-bus system along with a more complex transmission and distribution co-simulation. This paper also characterizes the performance of different methods for translating the unbalanced voltage phasors into a balanced representation in order to give recommendations for modeling coupled transmission and distribution systems.
机译:传统电力系统模型代表了具有不平衡三相网络模型和具有平衡单相等效网络模型的传输系统的分配系统。这种区分对传输和分配系统的耦合模型构成了挑战,这导致由于连接到分配系统的分布能源资源的增长而变得更为普遍。为了保持平衡的网络表示,传输系统模型通常假设接口到分配系统的电压相位是平衡的。由于在不平衡操作期间这种假设引起的不准确性可能导致传输系统模型中的线电流的错误值。本文在简单的两巴士系统以及更复杂的传输和分配共模的不平衡操作条件下,在不平衡操作条件下,经验证明了这种平衡操作假设的准确性。本文还表征了不同方法的性能,将不平衡电压相位转换为平衡表示,以便为建模耦合传输和分配系统提供建议。

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