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首页> 外文期刊>IEEE Transactions on Signal Processing >Massive MIMO for Decentralized Estimation of a Correlated Source
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Massive MIMO for Decentralized Estimation of a Correlated Source

机译:大规模MIMO用于相关源的分散估计

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We consider a decentralized multi-sensor estimation problem where sensor nodes observe noisy versions of a correlated random source vector. The sensors amplify and forward their observations over a fading coherent multiple access channel (MAC) to a fusion center (FC). The FC is equipped with a large array of antennas and adopts a minimum mean-square error (MMSE) approach for estimating the source. We optimize the amplification factor (or equivalently transmission power) at each sensor node in two different scenarios: a) with the objective of total power minimization subject to mean square error (MSE) of source estimation constraint, and b) with the objective of minimizing MSE subject to total power constraint. For this purpose, based on the well-known favorable propagation condition (when ) achieved in massive multiple-input multiple-output (MIMO), we apply an asymptotic approximation on the MSE and use convex optimization techniques to solve for the optimal sensor power allocation in a) and b). In a), we show that the total power consumption at the sensors decays as , replicating the power savings obtained in massive MIMO mobile communications literature. We also show several extensions of the aforementioned scenarios to the cases where sensor-to-FC fading channels are correlated, and channel coefficients are subject to estimation error. Through numerical studies, we also illustrate the superiority of the proposed optimal power allocation methods over uniform power allocation.
机译:我们考虑一个分散的多传感器估计问题,其中传感器节点观测到相关随机源向量的噪声版本。传感器将其观测结果放大并通过衰减的相干多路访问信道(MAC)转发到融合中心(FC)。 FC配备有大量天线,并采用最小均方误差(MMSE)方法估计源。我们在两种不同的情况下优化每个传感器节点处的放大因子(或等效传输功率):a)以使总功率最小化为目标,但要受源估计约束的均方误差(MSE)的影响,b)以使目标最小化为目标MSE受总功率约束。为此,基于在大规模多输入多输出(MIMO)中实现的众所周知的有利传播条件(当时),我们在MSE上采用渐近逼近法,并使用凸优化技术来求解最佳传感器功率分配在a)和b)中。在a)中,我们表明传感器的总功耗衰减为,从而复制了大量MIMO移动通信文献中获得的功耗节省。我们还展示了上述方案的几种扩展,适用于传感器到FC衰落信道相关且信道系数易受估计误差影响的情况。通过数值研究,我们还说明了所提出的最佳功率分配方法优于均匀功率分配的优势。

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