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Titlebook: Handbook of Real-Time Computing; Yu-Chu Tian,David Charles Levy Living reference work 20200th edition

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Distributed Impulsive Control of Leader-Following Multi-agent Systems,pulsive control, respectively. Leader-follower consensus problem in homogenous networks is studied in Sect. 2. Then in Sect. 3, a network-based leader-following consensus problem is considered, and distributed delayed impulsive protocols are designed for nonlinear multi-agent systems. Finally, bound
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Impulsive Control of Multi-agent Systems with Partial Information,stics, including sampled-data communications, fast convergence rate, and low maintenance costs. On the other hand, in many real-world applications, only partial information can be available for controller design because of limitations existed in measurement or communication of practical multi-agent
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Analysis and Design of Synchronization for Heterogeneous Network,igned controller includes reference generator and regulator. A model-based approach is utilized to predict the relative internode states between intermittent communications, which can significantly reduce the transmitted information. The control action is generated based on these predicted values of
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Consensus of Multi-agent Systems with Intermittent Communication and Its Extensions,r multi-agent systems with a fixed directed topology and synchronously intermittent communication constraints is investigated. It is proved that consensus in the second-order multi-agent systems with synchronously intermittent communication can be reached if the general algebraic connectivity of the
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Synchronization of Nonlinear Dynamical Networks with Heterogeneous Impulses, The intrinsic properties of the heterogeneous impulses are that the impulsive strengths are heterogenous in both time and space domains, i.e., the impulsive effects in each node are not only nonidentical from each other, but also time-varying at different impulsive instants. The purpose of the addr
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