A 12mW 70-to-100GHz mixer-first receiver front-end for mm-wave massive-MIMO arrays in 28nm CMOS

Lorenzo Lotti, G. LaCaille, A. Niknejad
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引用次数: 16

Abstract

Multi-user multiple-input multiple-output (MIMO) systems are promising enablers for high-capacity wireless access in next-generation mobile networks. Leveraging antenna arrays at the access point, narrow beams can be steered to different users simultaneously, enhancing spectral efficiency through spatial multiplexing. By employing a number of array elements, M, much larger than the number of users, K, (i.e. massive MIMO), simple linear beamforming algorithms can achieve nearly optimal operation [1]. Operating massive MIMO systems at mm-waves results in compact antenna arrays and wide channel bandwidths. Within the available spectrum, the E-Band communication bandwidth (71 to 76GHz, 81 to 86GHz, and 92 to 95GHz) has recently gained attention for both access and wireless backhaul, due to low oxygen attenuation.
用于28nm CMOS毫米波大规模mimo阵列的12mW 70- 100ghz混频器优先接收器前端
多用户多输入多输出(MIMO)系统是下一代移动网络中高容量无线接入的有希望的实现器。利用接入点的天线阵列,窄波束可以同时引导到不同的用户,通过空间复用提高频谱效率。通过使用比用户数量K大得多的阵列元素M(即大规模MIMO),简单的线性波束形成算法可以实现近乎最优的运行[1]。在毫米波下运行大规模MIMO系统可以实现紧凑的天线阵列和宽信道带宽。在可用频谱内,e波段通信带宽(71 - 76GHz、81 - 86GHz和92 - 95GHz)由于氧衰减低,最近受到了接入和无线回程的关注。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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