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Generator Reactive Power Constrained Voltage Stability Analysis of Large Power System Under Critical Line Outage

机译:临界线路中断下大型电力系统的发电机无功约束电压稳定性分析

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Heavy loads and large disturbances are usually manifested into voltage instability of power systems. The increased transaction levels in open access power systems are main cause of stressful operation of the system. Several countries around the globe have reported incidences of voltage instability in recent years. It has become a top priority of power engineers to solve voltage instability related problems and control the voltage profile. Action of Automatic Voltage Regulators (AVRs) of the generators is the first line of defense against voltage instability. The challenge of maintaining power system voltage stability and security under outage conditions is well taken by the power system engineers. The security assessment in the event of a contingency provides the knowledge about the current and future system state. When generator reactive power is automatically regulated, the voltage stability is improved. In present studies IEEE 6 Bus Power system is considered for static voltage stability. The co-relationship of upper limits of generator reactive power with voltage stability and maximum system loadability under critical line outage is established.
机译:重负载和大干扰通常表现为电力系统的电压不稳定。开放式接入电力系统中交易量的增加是系统运行压力大的主要原因。近年来,全球有几个国家报告了电压不稳定的情况。解决与电压不稳定性相关的问题并控制电压曲线已成为电力工程师的头等大事。发电机的自动电压调节器(AVR)的作用是防止电压不稳定的第一道防线。电力系统工程师已经很好地应对了在断电情况下保持电力系统电压稳定性和安全性的挑战。发生突发事件时的安全评估可提供有关当前和将来系统状态的知识。当发电机无功功率自动调节时,电压稳定性得到改善。在当前的研究中,IEEE 6总线电源系统被认为具有静态电压稳定性。建立了关键线路中断情况下发电机无功功率上限与电压稳定性和最大系统负载能力之间的相互关系。

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