基于混合PSO- levy飞行算法的多区域电力系统自动生成控制模糊PID控制器

Ajit Kumar Barisal, T. Panigrahi, S. Mishra
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引用次数: 24

摘要

提出了一种基于Levy飞行算法的混合粒子群算法(LFPSO),用于PID控制器的优化,并将其应用于非线性电力系统的自动生成控制(AGC)中。通过与最近发表的基于Lozi映射的混沌优化算法(LCOA)和粒子群优化算法进行比较,证明了LFPSO方法在解决负载频率控制(LFC)问题上的优越性。通过改变系统参数和加载条件的标称值,以及扰动的大小和位置,所提出的LFPSO方法在沉降时间、超调和欠调方面具有鲁棒的动态特性。其次,考虑具有非线性发电速率约束(GRC)的三区火电系统,其控制效果优于基于细菌觅食算法的积分控制器以及基于混合差分进化和粒子群优化的模糊PID控制器。最后,通过随机负载模式验证了所提控制器的熟练程度。
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A Hybrid PSO-LEVY Flight Algorithm Based Fuzzy PID Controller for Automatic Generation Control of Multi Area Power Systems: Fuzzy Based Hybrid PSO for Automatic Generation Control
This article presents a hybrid PSO with Levy flight algorithm (LFPSO) for optimization of the PID controllers and employed in automatic generation control (AGC) of nonlinear power system. The superiority of the proposed LFPSO approach has been demonstrated with comparing to recently published Lozi map-based chaotic optimization algorithm (LCOA) and Particle swarm optimization to solve load-frequency control (LFC) problem. It is found that the proposed LFPSO method has robust dynamic behavior in terms of settling times, overshoots and undershoots by varying the system parameters and loading conditions from their nominal values as well as size and locations of disturbance. Secondly, a three-area thermal power system is considered with nonlinear as Generation Rate Constraints (GRC) and outperforms to the results of Bacteria Foraging algorithm based integral controller as well as hybrid Differential Evolution and Particle Swarm Optimization based fuzzy PID controller for the similar power system. Finally, the proficiency of the proposed controller is also verified by random load patterns.
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