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Improvement of system security with unified-power-flow controller at suitable locations under network contingencies of interconnected systems

机译:在互连系统的网络突发情况下,在合适的位置使用统一潮流控制器提高系统安全性

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摘要

The operation and planning of large interconnected power systems are becoming increasingly complex. To maintain security of such systems, it is desirable to estimate the effect of contingencies and plan suitable measures to improve system security/stability. The paper presents an approach for selection of unified-power-flow-controller (UPFC-) suitable locations considering normal and network contingencies after evaluating the degree of severity of the contingencies. The ranking is evaluated using composite-criteria-based fuzzy logic for eliminating masking effects. The fuzzy approach, in addition to real-power loadings and bus-voltage violations, also used voltage-stability indexes at the load buses as the post-contingent quantities to evaluate the network-contingency ranking. The selection of UPFC-suitable locations uses the criteria on the basis of improved system security/stability. The proposed approach for selection of UPFC-suitable locations has been tested under simulated conditions on a few power systems and the results for a 205-node real-life equivalent regional-power-grid system of three interconnected utility systems are presented for illustration purposes.
机译:大型互连电源系统的操作和计划变得越来越复杂。为了维持这种系统的安全性,期望估计突发事件的影响并计划适当的措施以改善系统安全性/稳定性。在评估突发事件的严重性程度之后,本文提出了一种在考虑正常和网络突发事件的情况下选择统一潮流控制器(UPFC-)合适位置的方法。使用基于复合标准的模糊逻辑评估排名,以消除掩盖效应。模糊方法除了有功功率负载和违反总线电压外,还使用负载总线上的电压稳定性指标作为或有事件后的数量,以评估网络和事后排名。选择适合UPFC的位置时,会根据提高的系统安全性/稳定性来使用标准。已在一些电力系统的模拟条件下测试了建议的选择适合UPFC的位置的方法,并以三个互连的公用事业系统的205节点实际等效区域电力系统的结果为例进行了说明。

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