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MIMO Detector for LTE/LTE-A Uplink Receiver

机译:LTE / LTE-A上行接收器的MIMO检测器

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摘要

We propose a carefully selected receiver structure, detector and detector implementation architecture for multiple-input multiple-output (MIMO) uplink base station receiver for fourth generation (4G) wireless cellular systems. First, we compare different receiver algorithms and structures for single-carrier frequency-division multiple access (SC-FDMA) uplink transmission to get a good understanding of the performance and complexity of these algorithms and their suitability for practical realization. One of those structures, namely the frequency domain MMSE equalization with sphere detection (SD), is proposed for implementation. The receiver consists of separate stages for inter-symbol interference (ISI) and inter-antenna interference (IAI) mitigation in frequency selective MIMO channels. Frame error rate (FER) performance is studied via simulations in realistic wireless channels and practical system parameters. K-best SD is selected as a detector algorithm for this receiver. There are several publications proposing a sort-free architecture for tree search type of detectors. Both a conventional K-best architecture and a sort-free architecture are implemented on a Xilinx Virtex-6 field-programmable gate array (FPGA) using High Level Synthesis (HLS) tool. Both architectures support 4 x 4 MIMO with 64-level modulation (64-QAM). Complexity results confirm that avoiding the sorter is not always recommended. The benefit of sort-free architecture depends on the system parameters.
机译:我们为第四代(4G)无线蜂窝系统的多输入多输出(MIMO)上行链路基站接收器,精心选择了一种接收器结构,检测器和检测器实现架构。首先,我们比较了单载波频分多址(SC-FDMA)上行链路传输的不同接收器算法和结构,以更好地理解这些算法的性能和复杂性以及它们对于实际实现的适用性。提出了其中一种结构,即带球面检测的频域MMSE均衡(SD)。接收器由单独的级组成,用于降低选频MIMO信道中的符号间干扰(ISI)和天线间干扰(IAI)。通过在实际的无线信道和实际的系统参数中进行仿真来研究帧错误率(FER)性能。选择K最佳SD作为此接收器的检测器算法。有几篇出版物提出了一种针对树搜索类型的检测器的无排序架构。使用高级综合(HLS)工具在Xilinx Virtex-6现场可编程门阵列(FPGA)上实现了传统的K最佳架构和无排序架构。两种架构均支持具有64级调制(64-QAM)的4 x 4 MIMO。复杂性结果证实,并非总是建议避免使用分类器。无排序体系结构的好处取决于系统参数。

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