Power efficient PID controller of wind driven induction generation single-phase induction motors for electric energy saving applications

A. Sharaf, A. Elgammal
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引用次数: 9

Abstract

The paper presents a novel self adjusting wind energy utilization scheme using a modified single phase operation of the three phase induction generator supplemented by a voltage stabilization switched filter compensation scheme. The series-parallel switched capacitor filter scheme is controlled by a dynamic Particle Swarm Optimization PSO error driven self adjusting controller to ensure voltage stabilization, minimum impact of the electric load excursions and wind variations on terminal voltage. The paper presents a family of novel switched smart filter compensated devices using Green Plug Filter Compensator GPFC devices for small single phase induction motors. The GPFC devices are equipped with a dynamic online error driven optimally tuned controller that ensures improved power factor, reduced feeder losses, stabilized voltage, minimal current ripples and efficient energy utilization/conservation with minimal impact on the host electric grid security and reliability.
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功率高效PID控制器的风力感应发电单相感应电机的电力节能应用
本文提出了一种新颖的自调节风能利用方案,该方案采用改进的三相感应发电机单相运行,辅以稳压开关滤波器补偿方案。串联并联开关电容滤波方案采用动态粒子群优化PSO误差驱动自调整控制器控制,以保证电压稳定、负荷漂移和风向变化对终端电压的影响最小。本文提出了一种基于绿插头滤波补偿器的新型开关式智能滤波补偿装置,用于小型单相感应电动机。GPFC设备配备了动态在线误差驱动的优化调谐控制器,可确保提高功率因数,降低馈线损耗,稳定电压,最小电流波动和高效的能源利用/节约,同时对主机电网的安全性和可靠性影响最小。
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