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Large-Scale MIMO Detection for 3GPP LTE: Algorithms and FPGA Implementations

机译:用于3GPP LTE的大规模MIMO检测:算法和FPGA实现

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Large-scale (or massive) multiple-input multiple-out put (MIMO) is expected to be one of the key technologies in next-generation multi-user cellular systems based on the upcoming 3GPP LTE Release 12 standard, for example. In this work, we propose—to the best of our knowledge—the first VLSI design enabling high-throughput data detection in single-carrier frequency-division multiple access (SC-FDMA)-based large-scale MIMO systems. We propose a new approximate matrix inversion algorithm relying on a Neumann series expansion, which substantially reduces the complexity of linear data detection. We analyze the associated error, and we compare its performance and complexity to those of an exact linear detector. We present corresponding VLSI architectures, which perform exact and approximate soft-output detection for large-scale MIMO systems with various antenna/user configurations. Reference implementation results for a Xilinx Virtex-7 XC7VX980T FPGA show that our designs are able to achieve more than 600 Mb/s for a 128 antenna, 8 user 3GPP LTE-based large-scale MIMO system. We finally provide a performance/complexity trade-off comparison using the presented FPGA designs, which reveals that the detector circuit of choice is determined by the ratio between BS antennas and users, as well as the desired error-rate performance.
机译:例如,大规模(或大规模)多输入多输出(MIMO)有望成为基于即将发布的3GPP LTE版本12标准的下一代多用户蜂窝系统中的关键技术之一。在这项工作中,我们就我们所知,提出了第一个VLSI设计,该设计能够在基于单载波频分多址(SC-FDMA)的大规模MIMO系统中实现高吞吐量数据检测。我们提出了一种基于Neumann级数展开的新的近似矩阵求逆算法,该算法大大降低了线性数据检测的复杂度。我们分析了相关的误差,并将其性能和复杂度与精确的线性检测器进行了比较。我们提出了相应的VLSI架构,该架构针对具有各种天线/用户配置的大规模MIMO系统执行精确和近似的软输出检测。 Xilinx Virtex-7 XC7VX980T FPGA的参考实现结果表明,我们的设计能够为128天线,8用户3GPP LTE的大规模MIMO系统实现600 Mb / s以上的速度。我们最后使用提出的FPGA设计进行了性能/复杂度的权衡比较,结果表明,选择的检测器电路取决于BS天线与用户之间的比率以及所需的误码率性能。

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