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Design and Realization of Stand-Alone Digital Fractional Order PID Controller for Buck Converter Fed DC Motor

机译:Buck变换器馈电直流电动机独立数字分数阶PID控制器的设计与实现

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The aim of paper is to employ digital fractional order proportional integral derivative (FO-PID) controller for speed control of buck converter fed DC motor. Optimal pole-zero approximation method in discrete form is proposed for realization of digital fractional order controller. The stand-alone controller is implemented on embedded platform using digital signal processor TMS320F28027. The five tuning parameters of controller enhance the performance of control scheme. For tuning of the controller parameters, dynamic particle swarm optimization technique is employed. The proposed control scheme is simulated on MATLAB and verified by experimental results. Performance comparison shows better speed control of separately excited DC motor with the realized digital FO-PID controller than that of the integer order PID controller.
机译:本文的目的是采用数字分数阶比例积分微分(FO-PID)控制器来控制降压转换器供电的直流电动机的速度。为实现数字分数阶控制器,提出了一种离散形式的最优零极点近似方法。独立控制器使用数字信号处理器TMS320F28027在嵌入式平台上实现。控制器的五个调整参数提高了控制方案的性能。为了调节控制器参数,采用了动态粒子群优化技术。所提出的控制方案在MATLAB上进行了仿真,并通过实验结果进行了验证。性能比较显示,与整数PID控制器相比,使用已实现的数字FO-PID控制器的独立励磁直流电动机的速度控制更好。

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