首页> 外文会议>International Conference on Advances in Control and Optimization of Dynamical Systems >Effect of Static Synchronous Series Compensator (SSSC) for Damping Oscillations in Automatic Generation Control with Cuckoo Search Optimised Integral Double Derivative Controller
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Effect of Static Synchronous Series Compensator (SSSC) for Damping Oscillations in Automatic Generation Control with Cuckoo Search Optimised Integral Double Derivative Controller

机译:静电同步串联补偿器(SSC)对乌木搜索优化整体双衍生控制器自动生成控制中振荡的影响

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This paper investigates into the effectiveness of cuckoo search (CS) algorithm to obtain the optimal gain settings of different classical controllers viz. integral (I), proportional plus integral (PI), proportional plus integral plus derivative (PID) and integral plus double derivative (IDD) for load-frequency control (LFC) of two-area interconnected thermal reheat power system without and with Static Synchronous Series Compensator (SSSC) in the tie-line, and compare its performance to establish its superiority over genetic algorithm (GA) and particle swarm optimization (PSO) algorithms. Further, the performance of above mentioned different classical controllers for the system without and with SSSC is investigated. The study is carried out considering appropriate generation rate constraints (GRC). Integral squared error (I.S.E) technique is used to optimize the designing parameters. Comparison of convergence characteristics of GA, PSO and CS algorithms reveal faster convergence in case of CS algorithm, which is an obvious choice of reducing computational burden. Comparison of dynamic responses reveals that responses for I, PI, PID controllers without and with SSSC are practically more or less same whereas those of IDD without and with SSSC are much better. The improved dynamic responses using IDD controller with SSSC, in terms of peak deviations and settling time as compared to the output responses of the system obtained without SSSC is also presented. Finally, sensitivity analysis is carried out to verify the robustness of the optimum gains of the IDD controllers to wide changes in system loading condition, several system parameters and size of step load perturbation (SLP).
机译:本文调查了Cuckoo搜索(CS)算法的有效性,以获得不同古典控制器viz的最佳增益设置。积分(I),比例加积分(PI),比例加积分加上衍生(PID)和整体加上双衍生物(IDD),用于两个面积互连的热再加热电力系统的负载频率控制(LFC),没有静态同步系列补偿器(SSC)在系列中,并比较其性能,以确定其在遗传算法(GA)和粒子群优化(PSO)算法上的优越性。此外,研究了没有SSC的系统的上述不同的经典控制器的性能。考虑到适当的产生率限制(GRC)进行该研究。积分平方误差(i.s.e)技术用于优化设计参数。 GA,PSO和CS算法的收敛特性的比较显示了CS算法的速度较快的收敛性,这是减少计算负担的明显选择。动态响应的比较揭示了对I,PI,PID控制器的响应实际上或更少,而没有和SSC的IDD的响应实际上或更低。还呈现了使用SSSC的IDD控制器的改进的动态响应,与没有SSSC的系统的输出响应相比的峰值偏差和稳定时间。最后,进行了灵敏度分析,以验证IDD控制器的最佳收益的稳健性,以对系统加载条件的宽变化,几个系统参数和步​​进负载扰动(SLP)的大小。

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