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Event-Triggered Dissipative Control for Networked Switched Linear Systems With Quantization

机译:带有量化的网络切换线性系统的事件触发耗散控制

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This paper concerns the dissipative control for networked switched linear systems subject to event-triggering strategies and quantization. Multiple event-triggering strategies are adopted to determine whether the sampled data to be transmitted. In order to make full use of network bandwidth, logarithmic quantizers are applied in the networked switched systems. In detail, by using a delay system analysis approach, a time-delay closed-loop switched system is developed. Then, sufficient conditions are obtained to guarantee the dissipative control performance of switched system by utilizing piecewise Lyapunov functional method and average dwell time technique. Furthermore, by designing event-triggered dissipative controllers and event-triggering strategies' parameters, sufficient conditions for the stability of the closed-loop system are provided and the system is dissipative. Finally, numerical simulation results show the effectiveness of the proposed method.
机译:本文涉及受事件触发策略和量化影响的网络开关线性系统的耗散控制。采用多种事件触发策略来确定是否要发送采样数据。为了充分利用网络带宽,在网络交换系统中应用了对数量化器。详细地,通过使用延迟系统分析方法,开发了一种时滞闭环切换系统。然后,利用分段Lyapunov函数法和平均停留时间技术,获得了足够的条件来保证开关系统的耗散控制性能。此外,通过设计事件触发的耗散控制器和事件触发策略的参数,为闭环系统的稳定性提供了充分的条件,并且该系统具有耗散性。最后,数值仿真结果表明了该方法的有效性。

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