在具有可变分辨率adc的5G接收器中提高功率效率的位分配

Waqas bin Abbas, Felipe Gómez-Cuba, M. Zorzi
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引用次数: 5

摘要

在未来的毫米波无线系统中,即使采用低分辨率的模数转换器(ADC),全数字接收器也可能在模数转换器(ADC)上有过高的功耗。我们提出利用毫米波的稀疏传播来优化ADC的分辨率。我们识别并分配更多的比特给捕捉更强输入信号的天线,而分配更少的比特给主要接收噪声的天线。为了方便潜在的实际实现,我们限制了分配问题,因此分配给每个天线的比特数只能取两个值中的一个,blow或bhigh。与具有短比特(blow≤bref≤bhigh)的参考固定分辨率毫米波系统相比,并取决于给出算法的两个选项之间的余量(blow, bhigh),我们的结果表明,具有低余量(例如,(4,6))的2级接收器可以在任何接收的未量化信噪比值上实现适度的省电(5-20%),而具有宽余量(例如,(1,8))的2级接收器只能在高信噪比下实现大的省电(80%)。同时在低信噪比下消耗比基准更高的功率。结合位分配和天线选择技术,我们创建了一个3级系统(例如,0,4,8),当仔细选择给定的分辨率选项时,它可以优于前一种方案。
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Bit allocation for increased power efficiency in 5G receivers with variable-resolution ADCs
In future mmWave wireless system, fully digital receivers may have an excessive power consumption at the Analog to Digital Converters (ADC), even if lower resolution ADCs are employed. We propose to optimize the ADC resolution exploiting the sparse propagation in mmWave. We identify and assign more bits to antennas that capture stronger incoming signals, and allocate fewer bits to the antennas that see mostly noise. In order to facilitate a potential practical implementation, we constrain the allocation problem so the number of bits assigned to each antenna can take only one of two values, blow or bhigh. Compared to a reference fixed-resolution mmWave system with bref bits (blow ≤ bref ≤ bhigh), and depending on the margin between the two options given to the algorithm, (blow, bhigh), our results show that 2-level receivers with a low margin (e.g., (4, 6)) can achieve moderate power saving (5-20%) consistent across any received unquantized SNR value, whereas 2-level receivers with a wide margin (e.g., (1, 8)) can achieve a large power saving (80%) only at high SNR, while consuming more power than the reference at low SNR. Combining bit allocation with antenna selection techniques, we create a 3-level system (e.g., 0, 4, 8) that can outperform the former scenario when the given resolution options are carefully chosen.
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