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Global Transient Stability-Constrained Optimal Power Flow Using an OMIB Reference Trajectory

机译:使用OMIB参考轨迹的全局暂态稳定约束最优潮流

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This paper presents a new approach to transient stability control using global transient stability-constrained optimal power flow (TSC-OPF) methods. Its novelty consists in using the single machine equivalent (SIME) method to perform (and improve) two main important functions of global TSC-OPF approaches: first, SIME is used to efficiently perform the power system transient stability analysis; second, SIME determines a stable one machine infinite bus equivalent rotor angular trajectory that is used as the reference stability constraint, at one specific integration step. In this way, the stability constraint is adjusted by SIME, at each iteration of the TSC-OPF method, in order to accurately reflect power system dynamic behavior. The prowess and main characteristics of the proposed approach are shown by numerical examples.
机译:本文提出了一种使用全局暂态稳定约束最优潮流(TSC-OPF)方法的暂态稳定控制新方法。它的新颖之处在于使用单机等效(SIME)方法来执行(和改进)全局TSC-OPF方法的两个主要重要功能:首先,SIME用于有效地执行电力系统暂态稳定性分析;其次,SIME在一个特定的积分步骤中确定稳定的一台机器的无限母线等效转子角轨迹,该轨迹用作参考稳定性约束。这样,在TSC-OPF方法的每次迭代中,SIME都会调整稳定性约束,以准确反映电力系统的动态行为。数值算例表明了该方法的优势和主要特点。

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