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Indoor Millimeter Wave MIMO: Feasibility and Performance

机译:室内毫米波MIMO:可行性和性能

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摘要

In this paper, we investigate spatial multiplexing at millimeter (mm) wave carrier frequencies for short-range indoor applications by quantifying fundamental limits in line-of-sight (LOS) environments and then investigating performance in the presence of multipath and LOS blockage. Our contributions are summarized as follows. For linear arrays with constrained form factor, an asymptotic analysis based on the properties of prolate spheroidal wave functions shows that a sparse array producing a spatially uncorrelated channel matrix effectively provides the maximum number of spatial degrees of freedom in a LOS environment, although substantial beamforming gains can be obtained by using denser arrays. This motivates our proposed mm-wave MIMO architecture, which utilizes arrays of subarrays to provide both directivity and spatial multiplexing gains. System performance is evaluated in a simulated indoor environment using a ray-tracing model that incorporates multipath effects and potential LOS blockage. Eigenmode transmission with waterfilling power allocation serves as a performance benchmark, and is compared to the simpler scheme of beamsteering transmission with MMSE reception and a fixed signal constellation. Our numerical results provide insight into the spatial variations of attainable capacity within a room, and the combinations of beamsteering and spatial multiplexing used in different scenarios.
机译:在本文中,我们通过量化视距(LOS)环境中的基本极限,然后研究在存在多径和LOS阻塞的情况下的性能,来研究短距离室内应用在毫米(mm)载波频率处的空间复用。我们的贡献总结如下。对于具有受限形状因数的线性阵列,基于扁长球面波函数特性的渐近分析表明,尽管可观的波束形成增益可在LOS环境中有效地提供空间上不相关的通道矩阵的稀疏阵列提供最大数量的空间自由度可以通过使用更密集的数组获得。这激发了我们提出的毫米波MIMO架构,该架构利用子阵列的阵列来提供方向性和空间复用增益。使用包含多径效应和潜在LOS阻塞的光线跟踪模型,在模拟的室内环境中评估系统性能。具有充水功率分配的本征模式传输充当性能基准,并且与具有MMSE接收和固定信号星座图的波束控制传输的更简单方案进行了比较。我们的数值结果可洞悉房间内可达到的容量的空间变化,以及在不同情况下使用的波束控制和空间复用的组合。

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