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Coordination Control for Uncertain Networked Systems Using Interval Observers

机译:不确定网络系统使用间隔观察者的协调控制

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摘要

In this article, we take the coordination control problem of linear time-invariant networked systems with uncertain additive disturbance and uncertain initial states into consideration. A distributed interval observer is first constructed for uncertain networked systems in which the control algorithm of each agent involves only the upper bound information and the lower bound information of the interval observer associated with itself and its neighbors, respectively. With the help of the cooperativity theory, it is proved that the interval observer can estimate the piecewise state for each agent and the interval-observer-based control algorithm can drive the uncertain system to achieve coordination behavior. Then, time-varying coordinate transformation is introduced to construct a novel interval observer which can eliminate the cooperativity premise on the system matrices and bound the states of all agents in real time. It is shown that the novel interval-observer-based control algorithm can guide the uncertain system to reach coordinated behavior. Finally, the numerical simulations are provided to verify the theoretical results.
机译:在本文中,我们考虑了不确定的添加剂干扰和不确定初始状态的线性时间不变网络系统的协调控制问题。首先为不确定的联网系统构造分布式间隔观察者,其中每个代理的控制算法仅涉及与自身及其邻居相关联的间隔观察者的上限信息和下限信息。在合作理论的帮助下,证明间隔观察者可以估计每个代理的分段状态,并且基于间隔观察者的控制算法可以驱动不确定的系统来实现协调行为。然后,引入了时变的坐标变换来构造一种新的间隔观察者,其可以消除系统矩阵上的合作前提并实时地与所有代理的状态结合。结果表明,新的间隔 - 观察者的控制算法可以指导不确定的系统达到协调的行为。最后,提供了数值模拟以验证理论结果。

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