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Scatterer Localization Using Large-Scale Antenna Arrays Based on a Spherical Wave-Front Parametric Model

机译:基于球面波前参数模型的大型天线阵列的散射体定位

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In this contribution, an algorithm based on the space-alternating generalized expectation–maximization principle is proposed for estimating the locations of scatterers involved in the last-hops of propagation paths when a large-scale antenna array is used in a receiver for channel measurement. The underlying generic parametric model is constructed under the spherical wave-front assumption, which allows characterizing a path with a new parameter, i.e., the distance between the scatterer at the last-hop of the path and a specific receiving antenna, additional to the conventional parameters characterizing a specular path under the plane wave-front assumption. Cramér–Rao lower bounds of mean squared errors are derived for the parameter estimators in a single-path scenario, and their accuracy is evaluated through Monte Carlo simulations. The performance of the algorithm when being applied in reality is also evaluated through experiments conducted in an office with a carrier frequency of 9.5 GHz, a bandwidth of 500 MHz, and the receiver equipped with a 121-element virtual array. The proposed signal model and algorithm can be extended to the case of localizing the scatterers in the first- and last-hops of paths when large-scale antenna arrays are used in both the transmitter and the receiver.
机译:在此贡献中,提出了一种基于空间替代广义期望最大化原理的算法,用于在接收机中使用大型天线阵列进行信道测量时,估计传播路径最后一跳所涉及的散射体的位置。基本的通用参数模型是在球面波前假设的基础上构建的,该模型允许使用新参数来表征路径,这是常规参数之外的新参数,即路径最后一跳处的散射体与特定接收天线之间的距离。在平面波前假设下表征镜面反射路径的参数。对于单路径方案中的参数估计量,推导了均方误差的Cramér-Rao下界,并通过蒙特卡洛模拟评估了其准确性。还可以通过在办公室中进行的实验评估该算法在实际应用时的性能,该办公室的载波频率为9.5 GHz,带宽为500 MHz,接收器配有121个元素的虚拟阵列。当在发射机和接收机中都使用大规模天线阵列时,所提出的信号模型和算法可以扩展到在路径的第一跳和最后一跳中定位散射体的情况。

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