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Millimeter wave wireless transmissions at E-band channels with uniform linear antenna arrays: Beyond the Rayleigh distance

机译:具有均匀线性天线阵列的E波段信道上的毫米波无线传输:超越瑞利距离

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In this paper, we study the point-to-point E-band millimeter wave wireless channel with uniform linear antenna arrays (ULAs) deployed at both link ends and present an analytical approach to characterize the channel behavior. We first derive explicit expressions for some channel eigenvalues at certain discrete system settings. The asymptotic behavior and the effective multiplexing distance (EMD) of the E-band channel are then investigated, where the latter is defined as the end-to-end distance at which the channel can support a certain number of spatially independent streams at finite signal-to-noise ratios (SNRs). We analytically show that the EMD for a given number of parallel signal transmissions is mainly determined by the product of the aperture sizes of the transmit and receive ULAs. This finding provides useful insights into the design of practical multi-gigabits wireless communication systems over E-band.
机译:在本文中,我们研究了在链路两端部署有均匀线性天线阵列(ULA)的点对点E波段毫米波无线信道,并提出了一种表征信道行为的分析方法。我们首先导出某些离散系统设置下某些通道特征值的显式表达式。然后研究E波段信道的渐近行为和有效多路复用距离(EMD),其中后者定义为该信道可以在有限信号下支持一定数量的空间独立流的端对端距离噪声比(SNR)。我们通过分析表明,给定数量的并行信号传输的EMD主要取决于发射和接收ULA的孔径大小的乘积。这一发现为在E波段上实际的几千兆位无线通信系统的设计提供了有用的见识。

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