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A novel load-nodal voltage stability index of power system

机译:电力系统的新型负荷节点电压稳定性指标

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Voltage stability problems are becoming increasingly evident since large amounts of power are being transferred from long distance and bulk power systems operate close to their stability limits. Accurate recognition of voltage collapse points and rapid analysis of load node voltage stability make it possible for procedures to prevent voltage collapse incidents. These efficacious operations depend on explicit models, rapid indices and very low time cost. In this paper, an efficient method is proposed for finding out voltage collapse point and manifesting voltage stability margins. Although several homologous methods have been used for voltage stability analysis, this developed method is simple, accurate and fast. It is based on a precise model of power network and a terse index of voltage stability margin. The equivalent network model concerns not only the target node but also its connecting buses, which makes it factual and accurate. The index considers both active power and reactive power flows and reflects the voltage stability margins, providing an indication of distance between the operating point and the collapse one. The validity and applicability of the proposed method has been verified through simulation on EPRI-36 bus system.
机译:电压稳定性问题变得越来越明显,因为从长距离传输大量功率,并且散装电力系统靠近其稳定性限制。准确识别电压折叠点和负载节点电压稳定性的快速分析使得可以防止电压折叠事件的程序。这些有效的操作取决于显式模型,快速指数和非常低的时间成本。在本文中,提出了一种用于找出电压折叠点和表现电压稳定性边缘的有效方法。虽然已经用于电压稳定性分析的几种同源方法,但这种开发方法简单,准确,快速。它基于电网的精确模型和电压稳定裕度的简洁指标。等效网络模型不仅关注目标节点,还涉及其连接总线,这使得它成为事实和准确。该指数考虑有源电力和无功功率流动并反映电压稳定性边缘,提供操作点与折叠之间的距离的指示。通过EPRI-36总线系统的仿真验证了所提出的方法的有效性和适用性。

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