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This paper addresses the H∞ control problem for networked control systems (NCSs) over multiple communication channels. A new method on the H∞ controller design is proposed to reduce the negative influences of communication constraints including signal transmission delay, data packet dropout and quantization effect. The proof techniques rely on Lyapunov function and linear matrix inequality (LMI) tools...
This paper addresses the problem of the H∞ filtering for networked control systems with quantized signals. The main contribution of the paper is to provide a linear matrix inequality approach for designing an asymptotically stable linear time-invariant H∞ filter for networked control systems where measurement quantization, signal transmission delay, and data packet dropout are considered. A novel...
This paper concerns the problem of the model, stability and controller design for networked control system (NCS) with time-varying delay and dropped out packet. For the NCS with time-varying delay and data packet dropout, four new control methods of dynamical state feedback control, dynamical state feedback proportional-integral (PI) control, state feedback proportional-derivative (PD) control and...
Output stabilization of networked control systems (NCSs) with the problem of data packet dropout and transmission delays is investigated in this paper. The quantity of data packet loss is governed by a Markov chain. New iterative model for the static output feedback NCSs with/without delays is set up. With a new additional matrix introduced, linear matrix inequality (LMI) sufficient conditions are...
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