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Global finite-time event-triggered consensus for a class of second-order multi-agent systems with the power of positive odd rational number and quantized control inputs

机译:具有正奇有理数和量化控制输入的能力的一类二阶多智能体系统的全局有限时间事件触发共识

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摘要

In this paper, we mainly investigate the global finite-time event-triggered consensus problem for a class of second-order multi-agent systems with the power of positive odd rational number and quantized control inputs under directed network topology. Under an appropriate assumption, a novel finite-time event-triggered consensus protocol is proposed to reduce the communication burden from the controller to the actuator. Based on the backstepping method, a synthetic trigger function is derived, and it is proven theoretically that the Zeno behavior is avoided for each agent under this trigger condition. Moreover, to avoid the chattering phenomenon caused by unknown input disturbances, the hysteretic quantizers are incorporated to quantize the input signals. It is shown that the proposed finite-time event-triggered consensus protocol enables the local neighbor position error, and the velocity error between any two agents converges toward a small range of the origin in a finite time. Finally, the proposed method is validated through a numerical example. (C) 2019 Elsevier B.V. All rights reserved.
机译:在本文中,我们主要研究在有向网络拓扑下具有正奇​​有理数和量化控制输入的一类二阶多智能系统的全局有限时间事件触发的共识问题。在适当的假设下,提出了一种新颖的有限时间事件触发共识协议,以减少从控制器到执行器的通信负担。基于backstepping方法,推导了合成触发函数,并且从理论上证明了在这种触发条件下避免了每个代理的Zeno行为。而且,为了避免由未知输入干扰引起的颤动现象,并入了滞回量化器以量化输入信号。结果表明,所提出的有限时间事件触发共识协议能够实现局部邻居位置误差,并且任意两个代理之间的速度误差在有限时间内都向着原点的小范围收敛。最后,通过数值算例验证了该方法的有效性。 (C)2019 Elsevier B.V.保留所有权利。

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