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Resolution-Adaptive Hybrid MIMO Architectures for Millimeter Wave Communications

机译:毫米波通信的分辨率自适应混合MIMO架构

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摘要

In this paper, we propose a hybrid analog–digital beamforming architecture with resolution-adaptive ADCs for millimeter wave (mmWave) receivers with large antenna arrays. We adopt array response vectors for the analog combiners and derive ADC bit-allocation (BA) solutions in closed form. The BA solutions reveal that the optimal number of ADC bits is logarithmically proportional to the RF chain's signal-to-noise ratio raised to the power. Using the solutions, two proposed BA algorithms minimize the mean square quantization error of received analog signals under a total ADC power constraint. Contributions of this paper include 1) ADC bit-allocation algorithms to improve communication performance of a hybrid MIMO receiver, 2) approximation of the capacity with the BA algorithm as a function of channels, and 3) a worst-case analysis of the ergodic rate of the proposed MIMO receiver that quantifies system tradeoffs and serves as the lower bound. Simulation results demonstrate that the BA algorithms outperform a fixed-ADC approach in both spectral and energy efficiency, and validate the capacity and ergodic rate formula. For a power constraint equivalent to that of fixed 4-bit ADCs, the revised BA algorithm makes the quantization error negligible while achieving 22% better energy efficiency. Having negligible quantization error allows existing state-of-the-art digital beamformers to be readily applied to the proposed system.
机译:在本文中,我们为具有大天线阵列的毫米波(mmWave)接收器提出了一种具有分辨率自适应ADC的混合模数波束形成架构。我们为模拟组合器采用阵列响应向量,并以封闭形式导出ADC位分配(BA)解决方案。 BA解决方案表明,ADC位的最佳数量与RF链的功率信噪比成对数比例。使用这些解决方案,提出的两种BA算法在总ADC功率约束下将接收到的模拟信号的均方量化误差降至最低。本文的贡献包括:1)ADC比特分配算法,以改善混合MIMO接收机的通信性能; 2)使用BA算法作为信道函数对容量进行近似,以及3)遍历率的最坏情况分析拟议的MIMO接收机的量化系统权衡并用作下限。仿真结果表明,BA算法在频谱效率和能效方面均优于固定ADC方法,并验证了容量和遍历速率公式。对于等效于固定4位ADC的功率约束,改进的BA算法使量化误差可忽略不计,同时实现了22%的更高能效。量化误差可忽略不计,可以将现有的最新数字波束形成器轻松应用于建议的系统。

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