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Distributed LCMV Beamforming in a Wireless Sensor Network With Single-Channel Per-Node Signal Transmission

机译:具有单通道每节点信号传输的无线传感器网络中的分布式LCMV波束成形

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摘要

Linearly constrained minimum variance (LCMV) beamforming is a popular spatial filtering technique for signal estimation or signal enhancement in many different fields. We consider distributed LCMV (D-LCMV) beamforming in wireless sensor networks (WSNs) with either a fully connected or a tree topology. In the D-LCMV beamformer algorithm, each node fuses its multiple sensor signals into a single-channel signal of which observations are then transmitted to other nodes. We envisage an adaptive/time-recursive implementation where each node adapts its local LCMV beamformer coefficients to changes in the local sensor signal statistics, as well as to changes in the statistics of the wirelessly received signals. Although the per-node signal transmission and computational power is greatly reduced compared to a centralized realization, we show that it is possible for each node to generate the centralized LCMV beamformer output as if it had access to all sensor signals in the entire network, without an explicit computation of the network-wide sensor signal covariance matrix. We provide sufficient conditions for convergence and optimality of the D-LCMV beamformer. The theoretical results are validated by means of Monte Carlo simulations, which demonstrate the performance of the D-LCMV beamformer.
机译:线性约束最小方差(LCMV)波束成形是一种流行的空间滤波技术,可用于许多不同领域中的信号估计或信号增强。我们考虑采用完全连接或树形拓扑的无线传感器网络(WSN)中的分布式LCMV(D-LCMV)波束成形。在D-LCMV波束形成器算法中,每个节点将其多个传感器信号融合为一个单通道信号,然后将其观测结果传输到其他节点。我们设想了一种自适应/时间递归的实现方式,其中每个节点都将其本地LCMV波束成形器系数调整为适应本地传感器信号统计数据的变化以及无线接收信号统计数据的变化。尽管与集中式实现相比,每个节点的信号传输和计算能力大大降低,但我们表明,每个节点都可以生成集中式LCMV波束形成器输出,就像它可以访问整个网络中的所有传感器信号一样,而无需全网传感器信号协方差矩阵的显式计算。我们为D-LCMV波束形成器的收敛和优化提供了充分的条件。理论结果通过蒙特卡洛模拟验证,证明了D-LCMV波束形成器的性能。

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