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This paper focuses on the ℓ1 finite-time control design problem of a class of network-based positive systems. Both the event-triggered mechanism of signal transmission and the network-induced delay are taken into account. Considering the peculiarity of positive systems, the event-triggered condition is designed in a linear form to reduce the occupation of network channels, which will save the limited...
In this paper, we investigate the ℋ∞ filtering problem of discrete-time Takagi-Sugeno (T-S) fuzzy systems in a network environment. Different from the well used assumption that the normalized fuzzy weighting function for each subsystem is available at the filter node, we consider a practical case in which not only the measurement but also the normalized fuzzy weighting functions are transmitted via...
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...
Using the method of setting a special number of buffer in receiving nodes in networked control systems proposed in literature, the stochastic time delay in networked control systems can be transformed a a constant delay. Then the stochastic networked control systems can be transformed to a deterministic system, which will be valuable when the probability distribution function of network-induced delay...
This paper investigates the observer-based H∞ control problem for networked control systems (NCSs) with random packet dropouts. A general model with multiple independent stochastic variables in multiple channels case is adopted to describe the data missing in the limited communication channels. With the consideration of the sensor-to-controller and controller-to-actuator packet dropouts at the same...
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