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Codesign of Dynamic Quantizer and Small-Gain-Based Distributed Model Predictive Control of Nonlinear Continuous System

作者:Yi Zheng, Yueyan Zhang, Shaoyuan Li, Min Luo · 发表于:IEEE Transactions on Control of Network Systems · 年份:2025 · DOI:10.1109/tcns.2025.3526729 · 被引用次数:5 · 研究领域:Advanced Control Systems Optimization

This paper presents a co-design control scheme that integrates Distributed Model Predictive Control with dynamic quantizers for networked nonlinear continuous systems operating under limited communication bandwidth. Each subsystem-based Model Predictive Control formulation considers the dynamic quantizer's influence within the optimization problem in the proposed method. Both the quantizer parameters and the control law are optimized simultaneously in real time, which offers potential improvements in the performance of the closed-loop system within a certain communication limitation. A stability constraint based on small-gain Lyapunov theory is designed for each subsystem's controller, allowing for a relaxation of the restrictions on the closed-loop subsystems compared to decentralized approaches. Additionally, a sufficient condition that ensures the stability of the overall system is provided. Simulation results demonstrate the effectiveness of the proposed co-design method.