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Optimization based real-time frequency dependent reduced order modeling of power grid

机译:基于优化的实时频率相关的降阶电网建模

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Modeling of large power system for electromagnetic (EMT) simulation studies is impractical because of the complexity and computational burden. However, it is critical to preserve electromechanical oscillations and high frequency behavior of the system under consideration. Generally such designs can be achieved by modeling the area of interest (study area) in detail and the area not of interest (external area) as a combination of Transient Stability Analysis (TSA) type equivalent and Frequency Dependent Network Equivalent (FDNE). TSA preserves the electromechanical behavior, whereas FDNE preserves high frequency behavior of the external area. In this paper a method of formulating FDNE using stability and passivity enforced online optimization algorithm based on nonlinear programming, and modeling of external area as a combination of FDNE and TSA based wideband equivalent for EMT studies is proposed.
机译:由于复杂性和计算负担,用于电磁(EMT)仿真研究的大型电力系统建模是不切实际的。但是,至关重要的是要保留所考虑系统的机电振荡和高频行为。通常,可以通过将感兴趣的区域(研究区域)和不感兴趣的区域(外部区域)建模为瞬态稳定性分析(TSA)类型等效项和频率相关网络等效项(FDNE)的组合,从而实现此类设计。 TSA保留了机电行为,而FDNE保留了外部区域的高频行为。本文提出了一种基于非线性规划的基于稳定性和无源性的在线优化算法来公式化FDNE的方法,并结合FDNE和基于TSA的基于宽带等效技术的EMT研究,对外部区域进行建模。

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