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Transient Stability Analysis of AC/DC Power System Based On Transient Energy Function

机译:基于瞬态能量函数的AC / DC电力系统暂态稳定性分析

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In this paper, a transient energy function for AC/DC power systems is used to evaluate critical clearing times with consideration of the DC dynamics. The generator angular speeds, rotor angles and voltages at the HVDC link's ac buses are explicit variables in the transient energy function. A method for computing the transient energy function numerically is proposed. In the method, the angular speeds and rotor angles deemed as slow dynamics are integrated along sustained fault trajectories, and the integral path of the DC dynamics treated as fast dynamics are acquired by some modifications. The problems in applying potential energy boundary surface (PEBS) method to the computation of critical clearing time are also discussed. The critical clearing times for 4-generator and 10-generator AC/DC systems obtained using the transient energy function approximate well to those with the step-by-step time simulation.
机译:在本文中,AC / DC电力系统的瞬态能量函数用于考虑DC动力学来评估关键清算时间。 HVDC链路交流总线处的发电机角速度,转子角度和电压在瞬态能量功能中是显式变量。提出了一种用于计算数值上的瞬态能量功能的方法。在该方法中,被认为是慢动动力学的角速度和转子角度沿着持续的故障轨迹集成,并且被视为快速动态的DC动力学的积分路径被一些修改获取。还讨论了将潜在能量边界表面(PEBB)方法应用于临界清算时间的计算中的问题。使用瞬态能量函数获得的4发生器和10发生器AC / DC系统的关键清算时间近似于具有逐步仿真的那些。

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