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A robust decoupling controller for fractional-order multivariable systems with dynamic quantization.

Created on 08 Sep 2026

Authors

Mohammad Zahed Abolhasani, Ali Akbarzadeh Kalat

Published in

ISA transactions. Sep 03, 2026. Epub Sep 03, 2026.

Abstract

This paper proposes an LMI-based framework for robust decoupling control of uncertain fractional-order MIMO systems with input quantization and constant reference tracking. The closed-loop dynamics are decomposed into diagonal and interaction components, and the decoupling problem is formulated using a singular-value-based H∞ criterion. Sufficient LMIs are derived for both maximum and minimum singular values of fractional-order transfer matrices, while the fractional Lyapunov discrepancy induced by the Caputo memory is characterized and bounded in the frequency domain. A reference-aware quantization scheme preserves symmetry around nonzero operating points, and auxiliary dynamics compensate transient saturation mismatch. A history-compatible hybrid zooming strategy certifies admissible zoom-in updates. Under the stated condition of infinitely many certified non-Zeno updates, asymptotic tracking convergence is established. TRMS simulations validate effectiveness.

PMID:
42705976
Bibliographic data and abstract were imported from PubMed on 08 Sep 2026.

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