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Weakest Location Exploration in IEEE-14 Bus System for Voltage Stability Improvement Using STATCOM, Synchronous Condenser and Static Capacitor

机译:IEEE-14总线系统的最薄弱位置探索,用于使用Statcom,同步冷凝器和静电电容改进电压稳定性

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In modern power systems, long transmission lines coupled with fast-growing load demand factor have resulted in a more stressed system than ever before. This paper is aimed at static voltage stability analysis (VSA) of IEEE-14 bus standard test case for weakest region exploration using conventional P-V and Q-V curve methods for investigating voltage unstable regions, predicting and preventing system blackouts. Furthermore, the static capacitor, synchronous condenser and STATCOM have been used for effective voltage restoration and regulation purposes. Hence the power grid can effectively manage and provide electricity reliably, safely and economically to consumers. Power World Simulator environment has been used for performance analysis.
机译:在现代动力系统中,耦合快速增长的负荷需求因子的长传输线导致比以往更加紧张的系统。本文旨在使用传统的P-V和Q-V曲线方法进行IEEE-14总线标准测试用例的静态电压稳定性分析(VSA),用于使用传统的P-V和Q-V曲线来研究电压不稳定区域,预测和防止系统停电。此外,静态电容器,同步电容器和Statcom已被用于有效的电压恢复和调节目的。因此,电网可以有效地,可靠,安全,经济地向消费者提供有效管理和提供电力。电力世界模拟器环境已被用于性能分析。

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