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Fractional-Order Controller design for Electrical Systems - A Study

机译:电气系统的分数阶控制器设计-研究

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Traditional and improved forms of Proportional+Integral+Derivative (PID) controllers are widely adopted in industries and laboratories to achieve finest outcomes during the reference tracking and disturbance rejection tasks. Better results can be achieved; (i) By choosing an appropriate controller structure based on the system under control, and (ii) By employing a suitable tuning procedure. If the above said checks are followed, then a better result can be achieved in offline and on online controllers. This research work aims to implement a Fractional Order I-PD (FOI-PD) structure for the benchmark Automatic-Voltage-Regulator (AVR) system and a Magnetic- Levitation (MegLev) system. Jaya-Algorithm (JA) is adopted to find the controller parameters. Initially, a traditional PID and I- PD structure are designed for the AVR model and its performance is analyzed for the reference tracking operation. Later, Fractional Order (FO) controllers, such as FOPID and FOI-PD are designed with retuning and tuning procedures. In this study, a relative analysis between the controllers is presented and its performances are evaluated with reference tracking operation. From this study, it is confirmed that, FOI-PD offers better controller performance compared to PID and FOPID.
机译:工业和实验室广泛采用传统的和改进形式的比例+积分+导数(PID)控制器,以在参考跟踪和干扰抑制任务中获得最佳结果。可以取得更好的结果; (i)根据受控制的系统选择适当的控制器结构,以及(ii)采用适当的调整程序。如果遵循上述检查,则可以在脱机和联机控制器上获得更好的结果。这项研究工作旨在为基准自动电压调节器(AVR)系统和磁悬浮(MegLev)系统实现分数阶I-PD(FOI-PD)结构。采用Jaya-Algorithm(JA)查找控制器参数。最初,为AVR模型设计了传统的PID和I-PD结构,并分析了其性能以进行参考跟踪操作。后来,分数阶(FO)控制器(例如FOPID和FOI-PD)采用重新调整和调整程序进行设计。在这项研究中,提出了控制器之间的相对分析,并通过参考跟踪操作对其性能进行了评估。从这项研究可以证实,与PID和FOPID相比,FOI-PD提供了更好的控制器性能。

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