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首页> 外文期刊>Signal and Information Processing over Networks, IEEE Transactions on >Topology-Independent Distributed Adaptive Node-Specific Signal Estimation in Wireless Sensor Networks
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Topology-Independent Distributed Adaptive Node-Specific Signal Estimation in Wireless Sensor Networks

机译:无线传感器网络中与拓扑无关的分布式自适应节点特定信号估计

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摘要

A topology-independent distributed adaptive node-specific signal estimation ( TI-DANSE) algorithm is presented where each node of a wireless sensor network (WSN) is tasked with estimating a node-specific desired signal. To reduce the amount of data exchange, each node applies a linear compression to its sensors signal observations, and only transmits the compressed observations to its neighbors. The TI-DANSE algorithm is shown to converge to the same optimal node-specific signal estimates as if each node were to transmit its raw (uncompressed) sensor signal observations to every other node in the WSN. The TI-DANSE algorithm is first introduced in a fully connected WSN and then shown, in fact, to have the same convergence properties in any topology. When implemented in other topologies, the nodes rely on an in-network summation of the transmitted compressed observations that can be accomplished by various means. We propose a method for this in-network summation via a data-driven signal flow that takes place on a tree, where the topology of the tree may change in each iteration. This makes the algorithm less sensitive to link failures and applicable to WSNs with dynamic topologies.
机译:提出了一种与拓扑无关的分布式自适应节点特定的信号估计(TI-DANSE)算法,其中无线传感器网络(WSN)的每个节点都负责估计节点特定的所需信号。为了减少数据交换量,每个节点对其传感器信号观测值应用线性压缩,并且仅将压缩后的观测值发送给其邻居。如图所示,TI-DANSE算法收敛于相同的最佳特定于节点的信号估计,就好像每个节点都将其原始(未压缩)传感器信号观测值传输到WSN中的每个其他节点一样。 TI-DANSE算法首先在完全连接的WSN中引入,然后证明实际上在任何拓扑中都具有相同的收敛性。当以其他拓扑实现时,节点依赖于所传输的压缩观测值的网络内求和,该求和可以通过各种方式来实现。我们提出了一种通过在树上发生的数据驱动信号流进行网络内求和的方法,其中树的拓扑可能在每次迭代中都发生变化。这使得该算法对链路故障的敏感性降低,并适用于具有动态拓扑的WSN。

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