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Design of Low-Overhead Cooperative Beamforming for Information Relaying in Wireless Sensor Networks Under Imperfect Quantized SNR of Source-to-Relay Links

机译:源到中继链路的不完全量化SNR下无线传感器网络中用于信息中继的低开销协作波束成形设计

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We consider a wireless sensor network employing cooperative beamforming for information relaying. To reduce the signaling overhead, each relay node quantizes the SNR of the source-to-relay (S-R) link into one bit, which is then transmitted through a binary symmetric channel (BSC) with a known crossover probability to the destination. Given the set of the error-corrupted one-bit messages received at the destination, the beamforming design criterion is the maximization of the expected receive SNR, averaged over the conditional bit-flipping distributions of BSCs. We derive an analytic expression for the considered SNR metric, which is a complicated function of the beamforming weights. To facilitate analysis, we further derive a tractable lower bound for the conditional average SNR. By conducting maximization with respect to this lower bound, a closed-form sub-optimal beamformer can be obtained as a solution to a generalized eigenvalue problem. Computer simulations are used to illustrate the performance of the proposed scheme.
机译:我们考虑采用协作式波束成形进行信息中继的无线传感器网络。为了减少信令开销,每个中继节点将源到中继(S-R)链路的SNR量化为一位,然后将其以已知的交叉概率通过二进制对称信道(BSC)发送到目的地。给定在目的地接收到的一组错误损坏的一位消息,波束成形设计标准是在BSC的条件位翻转分布上平均的预期接收SNR的最大值。我们导出了所考虑的SNR度量的解析表达式,它是波束赋形权重的复杂函数。为了便于分析,我们进一步得出条件平均SNR的可处理下界。通过对该下限进行最大化,可以获得封闭形式的次优波束形成器,作为广义特征值问题的解决方案。计算机仿真用于说明所提出方案的性能。

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