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Design of Prediction-Based Estimator for Time-Varying Networks subject to Communication Delays and Missing Data ?

机译:设计基于时间的预测估算器,用于时变网络,受通信延迟和缺失数据

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This paper is concerned with the robust optimal estimation problem based on the prediction compensation mechanism for dynamical networks with time-varying parameters, where communication delays and degraded measurements are considered. The missing measurements are characterized by some random variables governed by Bernoulli distribution, where each sensor having individual missing probability is refected. During the signal transmissions through the communication networks, the network-induced communication delays commonly exist among the adjacent nodes transmissions and a prediction updating method is given to compensate the caused impacts. Accordingly, a time-varying state estimator with hybrid compensation scheme is constructed such that, for both the communication delays and missing measurements, a minimized upper bound matrix with regards to the estimation error covariance matrix is found and an explicit estimator parameter matrix is designed at each sampling step accordingly. Finally, the comparative simulations are given to validate the advantages of main results.
机译:本文涉及基于具有时变参数的动态网络预测补偿机制的鲁棒最优估计问题,其中考虑了通信延迟和降级测量。缺失的测量以伯努利分布管理的一些随机变量为特征,其中需要具有单独缺失概率的每个传感器。在通过通信网络的信号传输期间,给出相邻节点传输中的网络感应通信延迟和预测更新方法中的预测延迟以补偿引起的影响。因此,构造具有混合补偿方案的时变状态估计器,使得对于通信延迟和缺少的测量,找到关于估计误差协方差矩阵的最小化上限矩阵,并且设计了明确的估计器参数矩阵每个采样步骤相应。最后,给出了比较仿真验证了主要结果的优势。

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