异构时变网络的弹性分布参数估计

Heath J. LeBlanc, F. Hassan
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引用次数: 26

摘要

在本文中,我们研究了在存在敌对节点的异构网络中分布式参数估计的轻量级算法。在一个时变网络中,所有节点都在本地广播通信模型下进行交互,该网络由许多廉价的正常节点以及几个更昂贵、更可靠的节点组成。正常或可靠的节点都可能被对手篡改和超越,从而成为对手节点。可靠的节点对其真实参数有准确的估计,而便宜的正常节点为了更好地估计其参数,与网络中的邻居进行通信和差分测量。正常节点先验地不确定它们的邻居中哪个是正常的、可靠的或敌对的节点。然而,通过与邻居共享局部估计的信息,我们证明了弹性迭代分布式估计(RIDE)算法能够通过去除极端信息来利用冗余,只要每个正常节点能够与足够数量的可靠节点进行足够频繁的交互,并且不受太多敌对节点的直接影响,就能够将局部估计驱动到它们的真实参数。
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Resilient distributed parameter estimation in heterogeneous time-varying networks
In this paper, we study a lightweight algorithm for distributed parameter estimation in a heterogeneous network in the presence of adversary nodes. All nodes interact under a local broadcast model of communication in a time-varying network comprised of many inexpensive normal nodes, along with several more expensive, reliable nodes. Either the normal or reliable nodes may be tampered with and overtaken by an adversary, thus becoming an adversary node. The reliable nodes have an accurate estimate of their true parameters, whereas the inexpensive normal nodes communicate and take difference measurements with neighbors in the network in order to better estimate their parameters. The normal nodes are unsure, a priori, about which of their neighbors are normal, reliable, or adversary nodes. However, by sharing information on their local estimates with neighbors, we prove that the resilient iterative distributed estimation (RIDE) algorithm, which utilizes redundancy by removing extreme information, is able to drive the local estimates to their true parameters as long as each normal node is able to interact with a sufficient number of reliable nodes often enough and is not directly influenced by too many adversary nodes.
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