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Output feedback quantized observer-based synchronization of linear multi-agent systems over jointly connected topologies

机译:联合连接的拓扑上线性多智能体系统的基于输出反馈量化的基于观察者的同步

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摘要

The synchronization problem of linear over-actuated multi-agent systems with unmeasurable states is studied in this paper, under both limited communication data rate and switching topology flows. A class of adaptive quantized observer-based encoding-decoding schemes and a class of certainty equivalence principle-based control protocols are proposed. By developing the graph-based space decomposition technique and analyzing the closed-loop quantized dynamic equations, it is shown that if the network topology flow is jointly connected, the communication channels are periodic active, and the agent dynamics is observable, and with the orthogonal system matrix, the proposed communication and control protocols can ensure the closed-loop system to achieve synchronization exponentially fast with finite bits of information exchange per step. Copyright (C) 2015 John Wiley & Sons, Ltd.
机译:研究了在通信数据速率受限和交换拓扑流量受限的情况下,状态不可测的线性过度驱动多主体系统的同步问题。提出了基于自适应量化的基于观察者的编码-解码方案和基于确定性等价原理的控制协议。通过开发基于图的空间分解技术并分析闭环量化的动力学方程,表明如果网络拓扑流被共同连接,则通信通道是周期性活动的,并且代理动力学是可观测的,并且具有正交关系。在系统矩阵中,建议的通信和控制协议可以确保闭环系统以每步有限的信息交换位数快速实现同步。版权所有(C)2015 John Wiley&Sons,Ltd.

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