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A novel optimization method of transient stability emergency control based on practical dynamic security region (PDSR) of power systems

机译:基于电力系统动态动态安全域(PDSR)的暂态稳定紧急控制优化方法

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This paper proposes a novel optimization method of transient stability emergency control based on a new concept of the so-called extended practical dynamic security region (EPDSR) defined in this paper and four experiential laws about the EPDSRs found from a number of studies in real power systems. In this method, the effect of a control action is represented by the displacement of EPDSR's critical hyper-plane boundary in the direction of its outer normal vector. If an unstable contingency occurs, appropriate emergency control actions are triggered so that the enlarged EPDSR can cover the current operating point. Based on these ideas, a mathematics model of emergency control strategy is developed for minimizing its total cost and guaranteeing power system transient stability. The simulation results on the 10-generator, 39-bus New-England Test System as well as other real power systems have shown the validity of this method.
机译:本文提出了一种新的暂态稳定紧急控制优化方法,该方法基于本文定义的所谓扩展实用动态安全区域(EPDSR)的新概念,以及从大量有功研究中发现的关于EPDSR的四个经验定律系统。在这种方法中,控制动作的效果由EPDSR的临界超平面边界在其外部法向矢量方向上的位移表示。如果发生不稳定的突发事件,则会触发适当的紧急控制措施,以便扩大的EPDSR可以覆盖当前的工作点。基于这些思想,建立了紧急控制策略的数学模型,以最小化其总成本并保证电力系统的暂态稳定性。在10发电机,39总线的新英格兰测试系统以及其他有功功率系统上的仿真结果证明了该方法的有效性。

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