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首页> 外文期刊>Cybernetics, IEEE Transactions on >Resilient State Estimation for 2-D Time-Varying Systems With Redundant Channels: A Variance-Constrained Approach
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Resilient State Estimation for 2-D Time-Varying Systems With Redundant Channels: A Variance-Constrained Approach

机译:具有冗余通道的2-D次变速系统的弹性状态估计:方差约束方法

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This paper investigates the state estimation problem for a class of 2-D time-varying systems with error variance constraints, where the implemented estimator gain is subject to stochastic perturbations. Redundant channels are utilized as a protocol to strengthen the transmission reliability and the channels' packet dropout rates are described by mutually uncorrelated Bernoulli distributions. The objective of the addressed problem is to design a resilient estimator such that an upper bound on the estimation error variance is first guaranteed and then minimized at each time step, where the considered gain perturbations are characterized by their statistical properties. By employing the induction method and the variance-constrained approach, an upper bound on the estimation error variance is first constructed by means of the solutions to two Riccati-like difference equations and, subsequently, a locally minimal upper bound is achieved by appropriately designing the gain parameter. Then, an effective algorithm is proposed for designing the desired estimator, which is in a recursive form suitable for online applications. Finally, a numerical simulation is provided to demonstrate the usefulness of the proposed estimation scheme.
机译:本文调查了具有误差方差约束的一类二维时间变化系统的状态估计问题,其中实现的估计器增益受到随机扰动的影响。冗余信道用作协议以加强传输可靠性,并且通过相互不相关的Bernoulli分布描述了通道的分组丢失率。解决问题的目的是设计弹性估计器,使得首先保证估计误差方差的上限,然后在每次步骤中最小化,其中所考虑的增益扰动的特征在于它们的统计特性。通过采用诱导方法和方差约束方法,首先通过对两个Riccati样差方程的解决方案构造估计误差方差的上限,并且随后通过适当地设计局部最小的上限来实现增益参数。然后,提出了一种用于设计所需估计器的有效算法,其处于适合于在线应用程序的递归形式。最后,提供了数值模拟以证明所提出的估计方案的有用性。

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