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Optimum line reclosing time for the enhancement of interconnected power system stability

机译:最佳的线路重合闸时间,以增强互连的电力系统的稳定性

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摘要

Automatic line reclosing schemes used in an extra-high-voltage power system is an economical and effective means to maintain transient stability. A novel method is proposed in the paper to adaptively optimize the automatic line reclosing time after a transient fault for enhancement of interconnected power system transient stability. Both the study on the transient energy over network and the structure-preserving multi-machines power system model illustrate that the excessive convergence of potential energy on the lines with a certain cutset deteriorate power system stability, and therefore, an optimum line reclosing strategy can he established by minimizing the change in transient potential energy distribution across a cutset lines in the vicinity of the faulty line as an optimization target, and the optimal reclosure time is set to the time of minimum line phase angle difference. Without any pre-determined knowledge, the method is adaptive to various power system operation modes and fault conditions, and easy to implement because only a limited number of data measured at one location on a tie-line linking sub-networks are required. Simulations have been performed with the OMIB (One Machine and Infinite Bus System) and a real inter-connected power system to verify the applicability of the method proposed.
机译:超高压电力系统中使用的自动线路重合闸方案是保持暂态稳定的一种经济有效的手段。本文提出了一种新的方法来自适应地优化瞬态故障后的自动重合闸时间,以增强互连电力系统的瞬态稳定性。对网络暂态能量的研究以及保留多机结构的电力系统模型都表明,具有特定割线的线路上势能的过度收敛会降低电力系统的稳定性,因此,一种最佳的线路重合策略可以通过使故障线附近的割线上的瞬态势能分布的变化最小化来确定最佳重合时间,并且将最佳重合时间设置为最小线相角差的时间。在没有任何预定知识的情况下,该方法适用于各种电力系统的运行模式和故障情况,并且易于实施,因为仅需要在联络线链接子网的一个位置上测量的有限数量的数据。已经使用OMIB(一台机器和无限总线系统)和一个真正的互连电源系统进行了仿真,以验证所提出方法的适用性。

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