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首页> 外文期刊>IEEE Transactions on Industrial Electronics >Distributed State Estimation for Linear Systems With Application to Full-Car Active Suspension Systems
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Distributed State Estimation for Linear Systems With Application to Full-Car Active Suspension Systems

机译:用于全车主动悬架系统的线性系统的分布式状态估计

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摘要

In this article, we treat the problem of distributed state estimation for medium- to large-scale linear systems. We consider a system, which consists of several subsystems, and assume that there already exist linear local estimators for the individual subsystems. These existing local estimators could be designed using algorithms of different types. We propose a systematic approach to connect the local estimators through information flows, such that a distributed state estimation scheme is formed for the linear system. The convergence and boundedness of the estimation error for the developed distributed scheme are proven. The proposed method is applied to a full-car active suspension system. The entire system is decomposed into five subsystems interacting with each other. A distributed estimation architecture is established based on the proposed method. The effectiveness of the proposed approach for the full-car suspension system is illustrated using simulation results, which confirm good estimation performance.
机译:在本文中,我们对中到大型线性系统的分布式状态估计问题。我们考虑一个由多个子系统组成的系统,并且假设为各个子系统已经存在线性本地估算。这些现有的本地估算器可以使用不同类型的算法设计。我们提出了一种通过信息流连接本地估计器的系统方法,使得为线性系统形成分布式状态估计方案。已证明开发分布式方案的估计误差的收敛性和界限。该方法应用于全车性悬架系统。整个系统被分解为彼此交互的五个子系统。基于所提出的方法建立分布式估计架构。使用仿真结果说明了全车悬架系统的提出方法的有效性,从而确认了良好的估计性能。

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