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Moving Horizon Estimation for Networked Time-Delay Systems Under Round-Robin Protocol

机译:循环协议下网络时滞系统的移动地平线估计

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摘要

This paper is concerned with the moving horizon estimation problem for a class of discrete time-delay systems under the Round-Robin (RR) protocol. The communication between the sensor nodes and the remote state estimator is implemented via a shared network, where only one sensor node is permitted to transmit data at each time instant for the purpose of preventing data collisions. The RR protocol is utilized to orchestrate the transmission order of sensor nodes, under which the selected node obtaining access to the network could be modeled by a periodic function. A lifting technology is introduced to reformulate the system model into a linear system without delays. The aim of the addressed problem is to develop a moving horizon estimator such that the estimation error is ultimately bounded. A sufficient condition is established to ensure the ultimate boundedness in terms of a matrix inequality. Within the established theoretical framework, two optimization problems are proposed to calculate the corresponding estimator parameters according to two different performance requirements (e.g., the smallest ultimate bound and the fastest decay rate). Finally, simulation examples are given to illustrate the effectiveness of the estimator design scheme.
机译:本文涉及循环(RR)协议下一类离散时延系统的移动地平线估计问题。通过共享网络实现传感器节点和远程状态估计器之间的通信,其中仅允许一个传感器节点在每次瞬间发送数据,以防止数据冲突。 RR协议用于协调传感器节点的传输顺序,在该传感器节点的发送顺序可以通过周期性函数来建模获取对网络的所选节点。引入提升技术以将系统模型重新定制到没有延迟的线性系统中。解决问题的目的是开发移动地平线估计器,使得估计误差最终有界限。建立充分条件以确保矩阵不等式方面的最终界限。在既定的理论框架内,提出了两种优化问题,根据两个不同的性能要求计算相应的估计参数(例如,最小的最终绑定和最快的衰减率)。最后,给出了仿真示例来说明估计器设计方案的有效性。

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