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A novel dynamic reactive power planning methodology to enhance transient voltage stability

机译:一种新颖的动态无功功率规划方法,可提高瞬态电压稳定性

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Transient voltage stability (TVS) is an important issue for security operation with the development of power system topology and loads. Lots of research on reactive power planning mainly focus on static voltage stability. But the research on the dynamic reactive power planning considering TVS is very lacking so far. And most of them are only analyzed on some serious buses without covering all the weak faults. And some research considering TVS are limited under some conditions and not general enough for large-scale applications. Therefore, it is an urgent task to propose a feasible dynamic reactive power planning methodology to enhance TVS. So a novel dynamic reactive power planning methodology is proposed in this paper. In addition, although some TVS assessment indices have been proposed, they may not be suitable to be used in dynamic reactive power planning in the iteration calculation. To evaluate voltage stability after contingencies, a TVS assessment index is presented. Then an approach based on compensation sensitivity analysis is discussed for the best dynamic volt ampere reactive planning candidate locations. And a dynamic reactive power planning optimization methodology based on the memetic immune algorithm for multiobjective optimization is proposed to enhance TVS with the least static volt ampere reactive compensator investment cost and power loss cost. The methodology can cover all faults through random faults selection in the optimization. Afterwards, IEEE 39 power system and Zhejiang power grid in China are illustrated and analyzed for the improvement of TVS. It is proved that the proposed dynamic reactive power planning methodology is effective and beneficial to the security operation for power system.
机译:随着电力系统拓扑和负载的发展,瞬态电压稳定性(TVS)是安全操作中的重要问题。关于无功功率规划的许多研究主要集中在静态电压稳定性上。但是到目前为止,尚缺乏关于考虑TVS的动态无功规划的研究。而且大多数仅在一些严重的公交车上进行了分析,而没有涵盖所有的弱故障。一些考虑TVS的研究在某些条件下受到限制,并且对于大规模应用而言还不够笼统。因此,提出一种可行的动态无功功率规划方法以增强TVS迫在眉睫。因此,本文提出了一种新颖的动态无功规划方法。另外,尽管已经提出了一些TVS评估指标,但它们可能不适合在迭代计算中用于动态无功计划中。为了评估意外情况后的电压稳定性,提出了TVS评估指标。然后讨论了基于补偿灵敏度分析的最佳动态伏安无功计划候选位置的方法。提出了一种基于模因免疫算法的动态无功规划优化方法,用于多目标优化,以最小的静态伏安无功补偿器投资成本和功耗成本来提高TVS。该方法可以通过优化中的随机故障选择来覆盖所有故障。然后,对中国的IEEE 39电力系统和浙江电网进行了举例说明和分析,以改善TVS。实践证明,提出的动态无功规划方法是有效的,有利于电力系统的安全运行。

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