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首页> 外文期刊>European transactions on electrical power engineering >A modified sine cosine algorithm with ensemble search agent updating schemes for small signal stability analysis
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A modified sine cosine algorithm with ensemble search agent updating schemes for small signal stability analysis

机译:具有集合搜索代理更新的修改正弦余弦算法,用于小信号稳定性分析

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摘要

In this paper, a modified sine cosine algorithm (MSCA) is proposed and is applied to design the power system stabilizer (PSS) and lead lag compensator-based static synchronous series compensator (SSSC) controller to enhance the power system stability. Two test systems: single machine infinite bus (SMIB) and multi-machine power system (MMPS) working under various loading conditions are taken as case studies. The objective of the work is to enhance the stability of the system by minimizing the rotor speed deviation of the generator. For this, the optimal controller parameters of PSS and SSSC are determined by using the MSCA technique. In the proposed MSCA method, two newly proposed search agent updating schemes (ie, SCA/rand-target and SCA/best-target) with parallel use of sine, cosine operators have been ensemble to generate the new search agents. The proposed MSCA method combines the exploration property of SCA/rand-target search agent updating scheme with exploitation property of SCA/best-target search agent updating scheme, which enhances the chances of attaining the near optimal solutions in fewer generations. The simulation results obtained from the proposed MSCA method have been applied on the two test system configurations of power system, which shows significant reduction in oscillations as compared with some well-known heuristic algorithms. The mean rotor speed deviation achieved using the proposed method for SMIB system and MMPS is 0.0013858 and 0.00046857 pu, respectively. Extensive statistical analysis on obtained results using Wilcoxon signed rank test, and Friedman and Nemenyi hypothesis test ensure the reliability and robustness of the proposed method.
机译:本文提出了一种修改的正弦余弦算法(MSCA),并应用于设计电力系统稳定器(PSS)和基于引导滞后补偿器的静态同步串联补偿器(SSSC)控制器,以提高电力系统稳定性。两台测试系统:在各种装载条件下工作的单机无限总线(SMIB)和多机电源系统(MMP)作为案例研究。该工作的目的是通过最小化发电机的转子速度偏差来提高系统的稳定性。为此,通过使用MSCA技术来确定PSS和SSSC的最佳控制器参数。在所提出的MSCA方法中,两个新提出的搜索代理更新方案(即SCA / RAND-TARGET和SCA / BEST-TARTIT),并行使用SINE,余弦运算符已经合并生成新的搜索代理。所提出的MSCA方法将SCA / RAND目标搜索代理更新方案的探索属性与SCA /最佳目标搜索代理更新方案的开发属性相结合,这增强了在较少世代达到近最佳解决方案的机会。从所提出的MSCA方法获得的模拟结果已经应用于电力系统的两个测试系统配置,与一些公知的启发式算法相比,振荡显着降低。使用所提出的SMIB系统和MMP方法实现的平均转子速度偏差分别为0.0013858和0.00046857 PU。使用Wilcoxon签名等级测试的获得结果进行了广泛的统计分析,以及弗里德曼和Nemenyi假设试验确保了所提出的方法的可靠性和鲁棒性。

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