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Optimal Design of PID Controller for AVR in a multi Machine Power System using Modified PSO and Fire Fly Optimization Technique

机译:多机电源系统PID控制器PID控制器的最佳设计用改装PSO和火力飞行优化技术

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摘要

The stability of power system when subjected to disturbances is one of the most important challenges. The Automatic voltage regulator (AVR) is used to enhance the performance of power system due to its acceptability to reduce damping. In this work the problem is formulated as a single objective optimization function to tune the AVR parameter gains of the PID controller. Here the firefly optimization algorithm which is found robustly for this type of problems is selected as a tool to find the optimum solution. Comprehensive simulations are carried out on a four machine power system under various operating conditions. The results are obtained under different fault conditions with FF optimization technique and compared the same with MPSO. At last it is observed that the FF technique performs better in damping the overshoot and settling time.
机译:当受到干扰时,电力系统的稳定性是最重要的挑战之一。自动电压调节器(AVR)用于增强电力系统的性能,因为它可以减少阻尼的可接受性。在这项工作中,该问题被制定为单个客观优化函数,以调整PID控制器的AVR参数增益。这里,选择了萤火虫优化算法,用于这种类型的问题被选择为用于找到最佳解决方案的工具。在各种操作条件下,在四台机器电力系统上进行综合模拟。结果在不同的故障条件下获得,具有FF优化技术,并将其与MPSO相比。最后,观察到,FF技术在阻尼过冲和稳定时间时更好地执行更好。

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