SYSYOCAug 1, 2014

Networked control systems in the presence of scheduling protocols and communication delays

arXiv:1408.014757 citationsh-index: 76
Originality Synthesis-oriented
AI Analysis

For control engineers, this work extends the applicability of scheduling protocols to NCSs with larger delays, but the contribution is incremental as it builds on existing time-delay and hybrid system frameworks.

This paper develops a time-delay approach for networked control systems with scheduling protocols (TOD and RR) and communication delays that can exceed sampling intervals. A novel hybrid system model and Lyapunov-Krasovskii method are introduced, demonstrating stability analysis on uncertain cart-pendulum and batch reactor examples.

This paper develops the time-delay approach to Networked Control Systems (NCSs) in the presence of variable transmission delays, sampling intervals and communication constraints. The system sensor nodes are supposed to be distributed over a network. Due to communication constraints only one node output is transmitted through the communication channel at once. The scheduling of sensor information towards the controller is ruled by a weighted Try-Once-Discard (TOD) or by Round-Robin (RR) protocols. Differently from the existing results on NCSs in the presence of scheduling protocols (in the frameworks of hybrid and discrete-time systems), we allow the communication delays to be greater than the sampling intervals. A novel hybrid system model for the closed-loop system is presented that contains {\it time-varying delays in the continuous dynamics and in the reset conditions}. A new Lyapunov-Krasovskii method, which is based on discontinuous in time Lyapunov functionals is introduced for the stability analysis of the delayed hybrid systems. Polytopic type uncertainties in the system model can be easily included in the analysis. The efficiency of the time-delay approach is illustrated on the examples of uncertain cart-pendulum and of batch reactor.

Foundations

The foundational work for this paper's niche, ranked by how specifically the neighbourhood builds on it — not by global fame.

Your Notes