Optimal fractional-order series cascade controller design: A refined Bode’s ideal transfer function perspective

Manish Yadav, Hirenkumar G. Patel, S. Nagarsheth
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Abstract

In process industries, cascade control is comprehensively used for disturbance attenuation. This manuscript presents the control of the non-minimum phase (NMP) system with dead time via a series cascade scheme. An improved fractional-filter-based control scheme encompassing inverse and dead time compensators with analytical tuning is proposed. The design hinges on an enhanced Bode’s ideal transfer function, which incorporates delay and NMP zero to deal with the system’s NMP and dead time. Particle swarm optimization (PSO) is utilized to obtain the optimal assessment of fractional filter-based controller settings by minimizing an objective function. Two benchmark problems are presented to test the efficacy of the recommended controller. The Riemann surface and sensitivity examination are used to realize the stability and robustness of the feedback design. Numerical simulations exhibit the superiority of the suggested controller for closed-loop results.
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最佳分数阶串联级联控制器设计:精炼的博德理想传递函数视角
在流程工业中,级联控制被广泛用于干扰衰减。本手稿介绍了通过串联级联方案控制具有死区时间的非最小相位(NMP)系统。文中提出了一种基于分数滤波器的改进控制方案,该方案包含反向补偿器和死区时间补偿器,并具有分析调谐功能。该设计以增强型 Bode 理想传递函数为基础,结合了延迟和 NMP 零,以处理系统的 NMP 和死区时间。利用粒子群优化(PSO),通过最小化目标函数,获得基于分数滤波器的控制器设置的最佳评估。提出了两个基准问题来测试推荐控制器的功效。黎曼曲面和灵敏度检查用于实现反馈设计的稳定性和鲁棒性。数值模拟证明了建议控制器在闭环结果方面的优越性。
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