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首页> 外文期刊>IEEE Transactions on Automatic Control >Finite-Time Guarantees for Byzantine-Resilient Distributed State Estimation With Noisy Measurements
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Finite-Time Guarantees for Byzantine-Resilient Distributed State Estimation With Noisy Measurements

机译:具有嘈杂测量的拜占庭式弹性分布式状态估计的有限时间保证

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This article considers resilient cooperative state estimation in unreliable multiagent networks. A network of agents aim to collaboratively estimate the value of an unknown vector parameter, while an unknown subset of agents suffer Byzantine faults. We refer to the faulty agents as Byzantine agents. Byzantine agents malfunction arbitrarily and may send out highly unstructured messages to other agents in the network. As opposed to fault-free networks, reaching agreement in the presence of Byzantine agents is far from trivial. In this article, we propose a computationally efficient algorithm that is provably robust to Byzantine agents. At each iteration of the algorithm, a good agent performs a gradient descent update based on noisy local measurements, exchanges its update with other agents in its neighborhood, and robustly aggregates the received messages using coordinate-wise trimmed means. Under mild technical assumptions, we establish that good agents learn the true parameter asymptotically in almost sure sense. We further complement our analysis by proving (high probability) finite-time convergence rate, encapsulating network characteristics.
机译:本文考虑了不可靠的多书网络中的弹性协作状态估算。代理网络旨在协同估计未知载体参数的值,而未知的代理子集遭受拜占庭故障。我们将错误的药剂称为拜占庭代理商。拜占庭式代理任意故障,可以向网络中的其他代理发送高度非结构化的消息。与无故障网络相反,在拜占庭试剂存在的情况下达成协议远远不断微不足道。在本文中,我们提出了一种计算上有效的算法,其对拜占庭剂来说是鲁棒的。在算法的每次迭代中,良好的代理基于嘈杂的本地测量执行梯度下降更新,其与其邻域中的其他代理交换其更新,并且使用坐标 - 明智的修剪装置鲁棒地聚合所接收的消息。在轻度技术假设下,我们建立了良好的代理商在几乎肯定的意义上渐近的真实参数。我们通过证明(高概率)有限时间收敛速率,封装网络特性,我们进一步补充了我们的分析。

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