Cluster-Based Quantization and Estimation for Distributed Systems

Y. Kim
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引用次数: 2

Abstract

We consider a design of a combined quantizer and estimator for distributed systems wherein each node quantizes its measurement without any communication among the nodes and transmits it to a fusion node for estimation. Noting that the quantization partitions minimizing the estimation error are not independently encoded at nodes, we focus on the parameter regions created by the partitions and propose a cluster-based quantization algorithm that iteratively finds a given number of clusters of parameter regions with each region being closer to the corresponding codeword than to the other codewords. We introduce a new metric to determine the distance between codewords and parameter regions. We also discuss that the fusion node can perform an efficient estimation by finding the intersection of the clusters sent from the nodes. We demonstrate through experiments that the proposed design achieves a significant performance gain with a low complexity as compared to the previous designs.
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基于聚类的分布式系统量化与估计
我们考虑了一种用于分布式系统的组合量化器和估计器的设计,其中每个节点在节点之间没有任何通信的情况下量化其测量并将其传输到融合节点进行估计。注意到最小化估计误差的量化分区在节点上不是独立编码的,我们将重点放在分区创建的参数区域上,并提出了一种基于聚类的量化算法,该算法迭代地找到给定数量的参数区域簇,每个区域比其他码字更接近相应的码字。我们引入了一种新的度量来确定码字和参数区域之间的距离。我们还讨论了融合节点可以通过找到从节点发送的聚类的交集来执行有效的估计。我们通过实验证明,与以前的设计相比,所提出的设计以较低的复杂性实现了显着的性能增益。
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