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Effect of line contingency on static voltage stability and maximum loadability in large multi bus power system

机译:线路应变对大型多母线电力系统中静态电压稳定性和最大负载能力的影响

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摘要

Voltage instability is the phenomena associated with heavily loaded power systems. It is normally aggravated due to large disturbance. Due to deregulation of power system, the system has to cater for the load bids in open access. This may cause the increased transaction level leading to more stress on the power system. It has become an urgent need of today to address the voltage stability problems to keep the voltage profile under control. Several incidences of voltage instability have occurred worldwide recently. In the event of contingency, the most serious threat to operation and control of power system is insecurity. The estimation of the power system state under contingency is an essential task for the power system engineers. The contingency analysis technique is a prerequisite to predict the effects of various contingencies like failure of transformers, transmission lines, etc. It helps to initiate necessary control actions to maintain power system security, reliability and stability. In the present work, two kinds of performance indices viz. active power performance index and reactive power performance index are computed for a large power system using a special code written in MATLAB environment. Furthermore, a novel idea of static voltage stability analysis by incrementing the load in proportion to the original load on load buses along with the most vulnerable line outage using Newton Raphson (N-R) load flow is presented.
机译:电压不稳定性是与重载电源系统相关的现象。通常由于大的干扰而加剧。由于电力系统的放松管制,该系统必须满足开放式接入中的负荷要求。这可能会导致交易量增加,从而给电力系统带来更大的压力。解决电压稳定性问题以保持电压曲线可控的今天已成为当务之急。最近在世界范围内发生了数种电压不稳定的事件。在发生突发事件时,对电力系统运行和控制的最严重威胁是不安全。对应急情况下的电力系统状态进行估计是电力系统工程师的一项基本任务。应变分析技术是预测各种突发事件(如变压器,输电线路等)的影响的先决条件。它有助于启动必要的控制措施,以维护电力系统的安全性,可靠性和稳定性。在当前的工作中,有两种性能指标。使用MATLAB环境编写的特殊代码,可以为大型电力系统计算有功功率性能指标和无功功率性能指标。此外,提出了一种新颖的静态电压稳定性分析方法,该方法通过使用牛顿拉夫森(N-R)潮流与负载总线上的原始负载成比例地增加负载以及最脆弱的线路中断,来实现。

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