Two-degree-of-freedom multi-input multi-output proportional–integral–derivative control design: Application to quadruple-tank system

Author:

Pradhan Jatin Kumar1ORCID,Ghosh Arun2,Bhende Chandrashekhar Narayan1

Affiliation:

1. School of Electrical Sciences, Indian Institute of Technology Bhubaneswar, Odisha, India

2. Department of Electrical Engineering, Indian Institute of Technology Kharagpur, West Bengal, India

Abstract

This article is concerned with designing a 2-degree-of-freedom multi-input multi-output proportional–integral–derivative controller to ensure linear quadratic regulator performance and H performance using a non-iterative linear matrix inequality–based method. To design the controller, first, a relation between the state feedback gain and proportional–integral–derivative gain is obtained. As the gains of proportional–integral–derivative controller cannot, in general, be found out from this relation for arbitrary stabilizing state feedback gain, a suitable form of the matrices involved in linear matrix inequality–based state feedback design is then chosen to obtain the proportional–integral–derivative gains directly. The special structure of the above matrices allows one to design proportional–integral–derivative controller in non-iterative manner. As a result, multi-objective performances, such as linear quadratic regulator and H, can be achieved simultaneously without increasing the computational burden much. To enhance the reference-input-to-output characteristics, a feedforward gain is also introduced and designed to minimize certain closed-loop H performance. The proposed control design method is applied for multi-input multi-output proportional–integral compensation of a laboratory-based quadruple-tank process. The performance of the compensation is studied through extensive simulations and experiments.

Publisher

SAGE Publications

Subject

Mechanical Engineering,Control and Systems Engineering

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1. Linear Quadratic Optimal Robust Multivariable Proportional-Integral Control Design for a Boiler-Turbine Unit;Journal of Dynamic Systems, Measurement, and Control;2023-11-01

2. State Estimation and Optimal Control of Four-Tank System with Stochastic Approximation Approach;Advances in Technology Innovation;2023-04-01

3. Reduced inverse integer-order controller design for a class of fractional-order model: Case study on two-tank liquid-level process;Proceedings of the Institution of Mechanical Engineers, Part I: Journal of Systems and Control Engineering;2022-12-15

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5. An application of Newton-like algorithm for H∞ proportional–integral–derivative controller synthesis of seesaw-cart system;Transactions of the Institute of Measurement and Control;2021-12-28

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