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首页> 外文期刊>Mathematical Problems in Engineering >Mixed H_2/H_∞ Performance Analysis and State-Feedback Control Design for Networked Systems with Fading Communication Channels
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Mixed H_2/H_∞ Performance Analysis and State-Feedback Control Design for Networked Systems with Fading Communication Channels

机译:通信信道衰落的网络系统混合H_2 /H_∞性能分析和状态反馈控制设计

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摘要

The purpose of the present paper is to provide a performance analysis approach of networked systems with fading communication channels. For a Ricean model of the fading communication channel, it is shown that the resulting system has a hybrid structure including the continuous-time dynamics of the networked systems and a discrete-time dynamics of the communication channels. Moreover, this resulting hybrid system has both multiplicative and additive noise terms. The performance analysis naturally leads to an H_2/H_∞ type norm evaluation for systems with finite jumps and multiplicative noise. It is proved that this norm depends on the stabilizing solution of a specific system of coupled Riccati's equations with jumps. A state-feedback design problem to accomplish a mixed H_2/H_∞ performance is also considered. A numerical iterative procedure allowing to compute the stabilizing solution of the Riccati-type system with jumps is presented. The theoretical results are illustrated by numerical results concerning the tracking performances of a flight formation with fading communication channel. The paper ends with some concluding remarks.
机译:本文的目的是提供一种具有衰落的通信信道的网络系统的性能分析方法。对于衰落的通信信道的Ricean模型,表明所得系统具有混合结构,包括网络系统的连续时间动态和通信信道的离散时间动态。此外,这种混合系统具有乘性和加性噪声项。对于具有有限跳跃和乘性噪声的系统,性能分析自然会导致H_2 /H_∞型范数评估。证明了该范数取决于带跳的耦合Riccati方程的特定系统的稳定解。还考虑了完成混合H_2 /H_∞性能的状态反馈设计问题。提出了一种数值迭代程序,可以计算带跳的Riccati型系统的稳定解。通过数值结果说明了理论结果,该数值结果涉及具有衰落通信信道的飞行编队的跟踪性能。本文以一些总结性结尾。

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