Optimal design of Fractional order PID controller based Automatic voltage regulator system using gradient-based optimization algorithm

Saleh Masoud Abdallah Altbawi , Ahmad Safawi Bin Mokhtar , Touqeer Ahmed Jumani , Ilyas Khan , Nawaf N. Hamadneh , Afrasyab Khan
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Abstract

Considering the superior control characteristics and increased tuning flexibility of the Fractional-Order Proportional Integral Derivative (FOPID) controller than the conventional PID regulator, this article attempts to explore its application in the optimal design of the Automatic Voltage Regulator (AVR). Since FOPID has two additional tuning parameters (µ and ʎ) than its mentioned conventional counterpart, its tuning process is comparatively difficult. To overcome the stated issue, a self-regulated off-line optimal tuning method based on the Gradient-Based Optimization (GBO) algorithm is adopted in the current study. The optimal FOPID gains are obtained by minimizing the selected Fitness Function (FF) that is chosen as Integral Time Absolute Error (ITAE) in the current study. The simulations are performed using MATLAB/SIMULINK 2018a to test and compare the performance of the proposed GBO-based optimal AVR design based on the dynamic response, stability, and robustness evaluation metrics with some of the recently published metaheuristic optimization algorithm based optimal AVR designs in the literature. The results show that the proposed AVR design provides the most optimal dynamic response and enhanced stability among the considered AVR designs, thus proves its efficacy and essence.

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使用梯度优化算法优化设计基于分数阶 PID 控制器的自动电压调节器系统
考虑到分数阶比例积分微分(FOPID)控制器比传统的 PID 调节器具有更优越的控制特性和更大的调节灵活性,本文试图探讨其在自动电压调节器(AVR)优化设计中的应用。由于 FOPID 比上述传统调节器多了两个调节参数(µ 和 ʎ),其调节过程相对困难。为克服上述问题,本研究采用了基于梯度优化 (GBO) 算法的自调节离线优化调整方法。最佳 FOPID 增益是通过最小化所选的拟合度函数 (FF) 而获得的,在本研究中,拟合度函数 (FF) 被选为积分时间绝对误差 (ITAE)。仿真使用 MATLAB/SIMULINK 2018a 进行,根据动态响应、稳定性和鲁棒性评估指标,测试并比较了所提出的基于 GBO 的最佳 AVR 设计与文献中最近发表的一些基于元启发式优化算法的最佳 AVR 设计的性能。结果表明,在所考虑的 AVR 设计中,所提出的 AVR 设计提供了最优的动态响应和更高的稳定性,从而证明了其有效性和本质。
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来源期刊
Journal of King Saud University, Engineering Sciences
Journal of King Saud University, Engineering Sciences Chemical Engineering-Fluid Flow and Transfer Processes
CiteScore
12.10
自引率
0.00%
发文量
87
审稿时长
63 days
期刊介绍: Journal of King Saud University - Engineering Sciences (JKSUES) is a peer-reviewed journal published quarterly. It is hosted and published by Elsevier B.V. on behalf of King Saud University. JKSUES is devoted to a wide range of sub-fields in the Engineering Sciences and JKSUES welcome articles of interdisciplinary nature.
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