A 1.8Gb/s 70.6pJ/b 128×16 link-adaptive near-optimal massive MIMO detector in 28nm UTBB-FDSOI

Wei Tang, H. Prabhu, Liang Liu, V. Öwall, Zhengya Zhang
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引用次数: 18

Abstract

This work presents a 2.0mm2 128×16 massive MIMO detector IC that provides 21dB array gain and 16x multiplexing gain at the system level. The detector implements iterative expectation-propagation detection (EPD) for up to 256-QAM modulation. Tested with measured channel data [1], the detector achieves 4.3dB processing gain over state-of-the-art massive MlMo detectors [2, 3], enabling 2.7x reduction in transmit power for battery-powered mobile terminals. The iC uses link-adaptive processing to meet a variety of practical channel conditions with scalable energy consumption. The design is realized in a condensed systolic array architecture and an approximate moment-matching circuitry to reach 1.8Gb/s at 70.6pJ/b. The performance and energy efficiency can be tuned over a wide range by UTBB-FDSOI body bias.
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基于28nm UTBB-FDSOI的1.8Gb/s 70.6pJ/b 128×16链路自适应近最优大规模MIMO探测器
这项工作提出了一个2.0mm2 128×16大规模MIMO检测器IC,在系统级提供21dB阵列增益和16倍复用增益。检测器实现了高达256-QAM调制的迭代期望传播检测(EPD)。通过测量通道数据[1]进行测试,该探测器比最先进的大规模MlMo探测器[2,3]实现了4.3dB的处理增益,使电池供电的移动终端的发射功率降低了2.7倍。该集成电路采用链路自适应处理,以满足各种实际信道条件和可扩展的能耗。该设计采用压缩收缩阵列结构和近似矩匹配电路,在70.6pJ/b下达到1.8Gb/s。利用UTBB-FDSOI体偏置可以在很宽的范围内调节性能和能效。
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