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Tens of Gigabits Wireless Communications Over E-Band LoS MIMO Channels With Uniform Linear Antenna Arrays

机译:具有均匀线性天线阵列的E波段LoS MIMO信道上的数十个千兆位无线通信

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This paper studies the fundamental characteristics of point-to-point E-band channels with uniform linear antenna arrays (ULAs) deployed at both the transmitter and receiver. We model the channels as line-of-sight (LoS) multiple-input multiple-output (MIMO) ones and focus on the channel eigenvalue characterization when the Rayleigh distance criterion cannot be fulfilled due to limited physical sizes of the transmitter and receiver. We first derive explicit expressions for some channel eigenvalues at certain discrete system settings. Asymptotic analyses are then developed when the antenna numbers at the transmitter and receiver or the distance between them goes to infinity. Based on these analytical results, the maximum eigenvalue and the effective multiplexing distance (EMD) of the E-band channel are investigated, where EMD is defined as the end-to-end distance at which the channel can support a certain number of simultaneous spatial streams at a given signal-to-noise ratio (SNR). 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. Numerical results are provided to validate the analyses.
机译:本文研究了在发射机和接收机处均布有均匀线性天线阵列(ULA)的点对点E波段信道的基本特性。我们将信道建模为视线(LoS)多输入多输出(MIMO),并着眼于由于发射机和接收机的物理尺寸有限而无法满足瑞利距离标准的信道特征值表征。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。当发射器和接收器的天线数或它们之间的距离变为无穷大时,便会进行渐近分析。基于这些分析结果,研究了E波段信道的最大特征值和有效复用距离(EMD),其中EMD定义为信道可以支持一定数量的同时空间的端到端距离流以给定的信噪比(SNR)传输。我们通过分析表明,对于给定数量的并行信号传输,EMD主要由发送和接收ULA的孔径大小的乘积确定。提供了数值结果以验证分析结果。

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