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Observer-enhanced distributed moving horizon state estimation subject to communication delays

机译:受通信延迟影响的观察者增强的分布式移动视界状态估计

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摘要

In this work, we focus on distributed moving horizon estimation (DMHE) of nonlinear systems subject to time-varying communication delays. In particular, a class of nonlinear systems composed of subsystems interacting with each other via their states is considered. In the proposed design, an observer-enhanced moving horizon state estimator (MHE) is designed for each subsystem. The distributed MHEs exchange information via a shared communication network. To handle communication delays, an open-loop state predictor is designed for each subsystem to provide predictions of unavailable subsystem states (due to delays). Based on the predictions, an auxiliary nonlinear observer is used to generate a reference subsystem state estimate for each subsystem. The reference subsystem state estimate is used to formulate a confidence region for the actual subsystem state. The MHE of a subsystem is only allowed to optimize its subsystem state estimate within the corresponding confidence region. Under the assumption that there is an upper bound on the time-varying delays, the proposed DMHE is proved to give decreasing and ultimately bounded estimation error. The theoretical results are illustrated via the application to a reactor-separator chemical process.
机译:在这项工作中,我们专注于时变通信时滞的非线性系统的分布式移动视界估计(DMHE)。特别地,考虑了一类由子系统通过其状态彼此相互作用的非线性系统。在提出的设计中,为每个子系统设计了一个观察者增强的移动视界状态估计器(MHE)。分布式MHE通过共享通信网络交换信息。为了处理通信延迟,为每个子系统设计了一个开环状态预测器,以提供对不可用子系统状态(由于延迟)的预测。基于这些预测,辅助非线性观测器用于为每个子系统生成参考子系统状态估计。参考子系统状态估计值用于为实际子系统状态制定置信区域。子系统的MHE仅允许在相应的置信区域内优化其子系统状态估计。在时变延迟有上限的假设下,所提出的DMHE被证明具有递减的且最终有界的估计误差。通过在反应器-分离器化学过程中的应用说明了理论结果。

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