多母线电力系统中母线参与系数与电压敏感系数的关联与比较

S. D. Naik, M. Khedkar, S. Bhat
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引用次数: 3

摘要

在重负荷系统中,电压稳定极限通常占主导地位,大扰动后通常出现电压不稳定。在放松管制的环境中,由于与开放访问相关的交易水平增加,传输系统在更大的压力条件下运行,这是典型的情况。与角度稳定性相比,对去调节系统的电压稳定性没有给予足够的重视。如何保持电压的分布,控制电压的稳定性,是需要引起重视的问题。文献中有各种各样的电压稳定性分析方法。本文采用V-Q灵敏度分析和模态分析对多母线电力系统(ieee14母线系统)进行了简单的电压稳定性分析。专门编写的软件代码允许同时或单独增加所选总线上的负载。研究了客车群负荷同时增加与单个客车负荷增加时V-Q灵敏度和母线参与的变化。建立了电压敏感系数与母线参与系数之间的关系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Correlation and comparison between bus participation factor and voltage sensitivity factor for simultaneous and individual bus load change in multi bus power system
In heavily loaded systems, voltage stability limit is usually dominant and voltage instability is usually observed following large disturbance. This is typically the case in the deregulated environment as the transmission systems are operating under more stressed condition due to increased transaction level associated with open access. Sufficient attention to voltage stability in deregulated system is not paid as compared to angle stability. More attention is required to be paid to keep voltage profile and hold the voltage stability under control. There are various methods for voltage stability analysis in the literature. In this paper simple voltage stability analysis is carried out for a multi bus power system (IEEE 14 Bus System) using V-Q Sensitivity analysis and modal analysis. A software code is specially written which allows increasing the load on the selected buses simultaneously as well as individually. The changes in V-Q sensitivity and bus participation is studied with simultaneous load increase on the group of buses compared with individual bus load increase. Also the correlation between the voltage sensitivity factor and bus participation factor is established.
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