Title :
Robust Model Predictive Control Under Saturations and Packet Dropouts With Application to Networked Flotation Processes
Author :
Yang Tang ; Cheng Peng ; Shen Yin ; Jianbin Qiu ; Huijun Gao ; Kaynak, Okyay
Author_Institution :
Inst. of Phys., Humboldt Univ. Berlin, Berlin, Germany
Abstract :
This paper investigates the problem of robust model predictive control (RMPC) with saturations and packet dropouts. In this model, polytopic uncertainties are adopted to describe the inconsistency arising from the discretization process of sampling, while the occurrence probabilities of packet dropouts are time-varying and saturations are taken into account to describe input and output signals. The problem of exponential RMPC with saturations and packet dropouts is solved and characterized by a convex optimization problem. The developed results of RMPC are then applied to networked flotation processes, which are made up of three layers: direct control layer, set-point control layer, and optimization layer. The RMPC is used for compensating the output information from the optimization layer to the direct control layer such that the desired economic objective can be achieved. Simulations are presented to show the effectiveness of the proposed method.
Keywords :
compensation; convex programming; networked control systems; predictive control; probability; robust control; sampling methods; time-varying systems; uncertain systems; RMPC; convex optimization problem; direct control layer; networked flotation processes; occurrence probabilities; optimization layer; output information compensation; packet dropouts; polytopic uncertainties; robust model predictive control; sampling discretization process; saturations; set-point control layer; time-varying system; Networked control systems; Optimization; Predictive control; Process control; Robustness; Uncertainty; Data losses; industrial processes; model predictive control; networked control systems; saturations;
Journal_Title :
Automation Science and Engineering, IEEE Transactions on
DOI :
10.1109/TASE.2013.2283304