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Optimal Reactive Power Planning for load margin improvement using Multi Agent Immune EP

机译:使用Multi Agent Immunity EP的最佳无功功率规划可提高负载裕度

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System's loadability is very much depends on the reactive power support in the network. Lack of reactive power support may results in a serious problem to occur i.e. voltage collapse. This paper presents a method to increase the system's loadability and hence the voltage stability margin of a system by utilizing the Optimal Reactive Power Planning (ORPP). A newly developed optimization technique; namely Multiagent Immune Evolutionary Programming (MAIEP) is introduced to obtain the optimal solution to the problem. The concept of MAIEP is developed based on the combination of Multiagent System, Artificial Immune System and Evolutionary Programming. The proposed MAIEP based ORPP was tested on the IEEE-26 reliability test system in order to realize its performance. The results obtained from the proposed ORPP using MAIEP has successfully improved the load margin and at the same time the total system losses and cost of generation were reduced.
机译:系统的负载能力在很大程度上取决于网络中的无功功率支持。缺少无功功率支持可能会导致发生严重问题,即电压崩溃。本文提出了一种通过利用最佳无功功率规划(ORPP)来提高系统的负载能力,从而提高系统的电压稳定性裕度的方法。新开发的优化技术;引入了多代理免疫进化规划(MAIEP)以获得该问题的最佳解决方案。 MAIEP的概念是基于Multiagent系统,人工免疫系统和进化规划的结合而开发的。为了实现其性能,在IEEE-26可靠性测试系统上对基于MAIEP的ORPP进行了测试。使用MAIEP从建议的ORPP中获得的结果成功改善了负载裕度,同时降低了系统总损耗和发电成本。

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