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A strategy for optimal loading pattern of a typical power system — A case study

机译:典型电力系统最佳负载模式的策略—案例研究

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This paper presents a Particle Swarm Optimization (PSO) based algorithm to find the optimal location and setting of FACTS devices in order to improve the loading margin as well as voltage stability and small signal stability. Recently, the electric load demand has been continuously growing all over the world. The rapid increase in load demand enforces power systems to operate closer to the limits of instability. But, owing to economical and environmental restraints, the expansion of existing power system is limited. Existing power system loading margin can be enhanced by optimal placement and setting of FACTS devices to accomplish more power transfers with less network expansion cost. The objective function is formulated as maximizing the loadability of the power system with load generation balance as equality constraint as well as voltage stability, generation limit and line limit constraints as inequality constraint. A Central Travancore -15 bus practical system is taken into consideration to test the effectiveness of the proposed approach using MATLAB/PSAT environment.
机译:本文提出了一种基于粒子群优化(PSO)的算法,以找到FACTS器件的最佳位置和设置,以提高负载裕量以及电压稳定性和小信号稳定性。最近,全世界的电力负载需求一直在持续增长。负载需求的快速增加迫使电力系统运行在接近不稳定极限的位置。但是,由于经济和环境的限制,现有电力系统的扩展受到限制。通过优化FACTS设备的放置和设置,可以提高现有电力系统的负载裕度,从而以较少的网络扩展成本完成更多的电力传输。目标函数被表述为最大化电力系统的可负载性,其中负载生成平衡作为等式约束,电压稳定性,发电极限和线路极限约束作为不等式约束。考虑使用中央Travancore -15总线实用系统来测试使用MATLAB / PSAT环境的方法的有效性。

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