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Speed Control of Induction Motor Fed from Wind Turbine via Particle Swarm Optimization Based PI Controller

机译:基于粒子群优化PI控制器的风力涡轮机馈送的感应电动机的速度控制

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Three-phase Induction Motor (IM) is widely used in the industry because of its rugged construction and absence of brushes. However, speed control of IM is required depending on the desired speed and application. This study proposes a design of a Proportional Integral (PI) controller using Particle Swarm Optimization (PSO) algorithm to control the speed of an IM supplied from wind turbine. The wind turbine acts as a prime mover to a connected DC generator. Pulse Width Modulation (PWM) is used to obtain three phase AC voltage from the output of DC generator. The proposed design problem of speed controller is formulated as an optimization problem. PSO is employed to search for optimal controller parameters by minimizing the time domain objective function. The performance of the proposed technique has been evaluated with respect to the variation of load torque and speed wind turbine. Also the performance of the proposed controller has been evaluated with the performance of the PI controller tuned by Genetic Algorithm (GA) in order to demonstrate the superior efficiency of the proposed PSO in tuning PI controller. Simulation results emphasis on the better performance of the optimized PI controller based on PSO in compare to optimized PI controller based on GA over a wide range of load torque and speed wind turbine.
机译:由于其坚固的结构和缺乏刷子,三相感应电动机(IM)广泛用于行业。但是,根据所需的速度和应用,需要对IM的速度控制。本研究提出了一种使用粒子群优化(PSO)算法的比例积分(PI)控制器的设计,以控制从风力涡轮机提供的IM的速度。风力涡轮机用作连接的DC发生器的原动机。脉冲宽度调制(PWM)用于从DC发生器的输出获得三相AC电压。速度控制器的建议设计问题被制定为优化问题。通过最小化时域目标函数,PSO被用于搜索最佳控制器参数。已经相对于负载扭矩和速度风力涡轮机的变化来评估所提出的技术的性能。此外,所提出的控制器的性能已经通过遗传算法(GA)调节的PI控制器的性能进行了评估,以便在调谐PI控制器中展示所提出的PSO的卓越效率。基于PA基于GA的优化PI控制器,仿真结果强调了基于PSO的优化PI控制器的优化PI控制器基于GA在广泛的负载扭矩和速度风力涡轮机上的优化PI控制器。

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