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Distributed model based event-triggered control for synchronization of multi-agent systems

机译:基于分布式模型的事件触发的多智能体系统同步控制

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摘要

This paper investigates the problem of event-triggered control for the synchronization of networks of nonlinear dynamical agents; distributed model-based approaches able to guarantee the synchronization of the overall system are derived. In these control schemes all the agents use a model of their neighbourhood in order to generate triggering instants in which the local controller is updated and, if needed, local information based on the adopted control input is broadcasted to neighbouring agents. Synchronization of the network is proved and the existence of Zeno behaviour is excluded; an event-triggered strategy able to guarantee the existence of a minimum lower bound between inter-event times for broadcasted information and for control signal updating is proposed, thus allowing applications where both the communication bandwidth and the maximum updating frequency of actuators are critical. This idea is further extended in an asynchronous periodic event-triggered schemes where the agents check a trigger condition via a periodic distributed communication without requiring a model based computation.
机译:本文研究了非线性动力智能体网络的事件触发控制问题。推导了能够保证整个系统同步的基于分布式模型的方法。在这些控制方案中,所有代理都使用其邻域模型来生成触发时刻,在该时刻中更新本地控制器,并且如果需要,将基于采用的控制输入的本地信息广播到相邻代理。证明了网络同步,并排除了Zeno行为的存在;提出了一种事件触发策略,该策略能够保证广播信息和控制信号更新的事件间时间之间存在最小下限,从而允许执行器的通信带宽和最大更新频率均至关重要的应用。该思想在异步周期性事件触发方案中得到了进一步扩展,在该方案中,代理通过周期性分布式通信检查触发条件,而无需基于模型的计算。

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