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Two triggered information transmission algorithms for distributed moving horizon state estimation?

机译:两种用于分布式移动视界状态估计的触发信息传输算法?

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摘要

In this work, we consider the reduction of information transmission frequency of distributed moving horizon estimation (DMHE) for a class of nonlinear systems in which interacting subsystems exchange information with each other through a shared communication network. Specifically, algorithms based on two event-triggered methods are proposed to reduce the number of information transmissions between the subsystems in a DMHE scheme. In the first algorithm, a subsystem sends out its current information when a triggering condition based on the difference between the current state estimate and a previously transmitted one is satisfied; in the second algorithm, the transmission of information from a subsystem to other subsystems is triggered by the difference between the current measurement of the output and its derivatives and a previously transmitted measurement. In order to ensure the convergence and ultimate boundedness of the estimation error, we also propose to redesign the local moving horizon estimator of a subsystem to account for the possible lack of state updates from other subsystems explicitly. A chemical process is utilized to demonstrate the applicability and performance of the proposed approaches.
机译:在这项工作中,我们考虑降低一类非线性系统的分布式移动视野估计(DMHE)的信息传输频率,在非线性系统中,交互子系统通过共享的通信网络相互交换信息。具体而言,提出了基于两种事件触发方法的算法,以减少DMHE方案中子系统之间的信息传输数量。在第一算法中,当满足基于当前状态估计和先前发送的估计之间的差的触发条件时,子系统发出其当前信息。在第二种算法中,信息从一个子系统到其他子系统的传输是由输出及其衍生物的当前测量值与先前传输的测量值之差触发的。为了确保估计误差的收敛性和最终有界性,我们还建议重新设计子系统的局部移动水平估计器,以明确考虑到其他子系统可能缺少的状态更新。利用化学过程来证明所提出方法的适用性和性能。

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