Optimizing the series cascade control structure for nonminimum phase system regulation

Author:

Singhal Ashish Kumar1,Yadav Manish2,Yadav Vijay3,Deshmukh Jyoti4,Billore Manish5,Mazumdar Hirak6ORCID

Affiliation:

1. SMIEEE and Sagar Institute of Science Technology & Engineering Bhopal India

2. Sardar Vallabhbhai National Institute of Technology Surat Gujarat India

3. Laxmi Narayan College of Technology Bhopal India

4. Sagar Institute of Science Technology & Research Bhopal India

5. Sagar Institute of Science Technology & Engineering Bhopal India

6. Graphic Era (Deemed to be University), Clement Town Dehradun Uttarakhand India

Abstract

AbstractThis work elucidates the control of integrating a nonminimum phase system via a series cascade scheme with fractional‐order P.I. (Proportional–Integral) plus D (Derivative) controller. The traditional Internal Model Control (IMC) is adopted for inner loop controller design. The feedback D controller is synthesized with the outer loop process model, showing the proposed work's universality. The outer loop controller is suggested in the IMC framework after the accountability of fractional‐filter and inverse response compensator. This combination is revealed to enhance performance without compromising robustness. The Riemann sheet principle is explored to compute the stability of the suggested controller. The sensitivity analysis has asserted the robustness. More importantly, the optimal value of controller settings is achieved via the Teaching Learning Based Optimization (TLBO) algorithm. This TLBO algorithm uses an objective function that minimizes Integral Square Error. Two illustrative problems are utilized to examine the recommended control structure's virtue.

Publisher

Wiley

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