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Real power performance index and line stability index-based management of contingency using firefly algorithm

机译:使用萤火虫算法的有功功率指标和线路稳定性指标的应急管理

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摘要

Provision of secured and uninterrupted supply of power is an essential pre-requisite for the electrical industry. Hence, FACTS devices need to be employed efficiently to ensure the security of the power system. This study proposes, a repetition of severity-based strategy of placement of interline power flow controller (IPFC) using composite severity index (CSI) for contingency management. The formulated CSI is a combination of real power performance index) and line stability index Lmn. Thus, the CSI is expected to provide an exact measure of stress on the lines in terms of MW overloading and voltage instability. The IPFC is further tuned for a multi-objective function using firefly algorithm. To verify the proposed methodology, it has been tested and implemented on IEEE 30 and Indian utility 62 bus system. The system has been further tested under highly stressful condition by increasing the load on the maximum loaded bus up to the critical value. The results have been presented and analysed to determine the effectiveness of IPFC for contingency management.
机译:提供安全且不间断的电源供应是电气行业必不可少的先决条件。因此,需要有效地使用FACTS设备以确保电力系统的安全性。这项研究提出,使用基于综合严重性指标(CSI)的应急管理,重复基于线间潮流控制器(IPFC)的基于严重性的放置策略。制定的CSI是有功功率性能指标和线路稳定性指标Lmn的组合。因此,CSI被期望以MW过载和电压不稳定性的方式提供对线路上应力的精确测量。使用萤火虫算法对IPFC进行多目标功能的进一步调整。为了验证所提出的方法,该方法已经在IEEE 30和Indian Utility 62总线系统上进行了测试和实现。通过将最大负载总线上的负载增加到临界值,在高压力条件下对该系统进行了进一步测试。已经提出并分析了结果,以确定IPFC在应急管理中的有效性。

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