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Design and implementation of a high performance closed-loop MIMO communications with ultra low complexity handset

机译:具有超低复杂度手机的高性能闭环MIMO通信的设计与实现

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An efficient and practicable MIMO transceiver in which transmitter antenna selection is applied to geometric mean decomposition (GMD) which is combined with Tomlinson-Harashima Precoder (THP) in TDD system is implemented. The proposed work can save more than 60% computational complexity at the handset compared with that of the GMD scheme is comparable to the conventional linear transceiver schemes. From the simulation results, the proposed transceiver can achieve about 7 dB SNR improvement over the open-loop VBLAST counterparts under i.i.d. channel. Finally, a MIMO joint transceiver is implemented on a SoC platform which is realized to do the hardware/software (HW/SW) co-verification strategy to debug the proposed architecture. In this paper, which introduces the figure file to be the transmission media. Designer could verify the decoded results in various environment by liquid crystal display (LCD) panel.
机译:实现了一种高效实用的MIMO收发器,其中将发射机天线选择应用于几何均值分解(GMD),并与TDD系统中的Tomlinson-Harashima预编码器(THP)结合。与GMD方案相比,与传统的线性收发器方案相比,拟议的工作可以在手机上节省60%以上的计算复杂性。从仿真结果来看,与i.i.d下的开环VBLAST相比,拟议的收发器可以实现约7 dB的SNR改善。渠道。最后,在SoC平台上实现MIMO联合收发器,该收发器被实现为执行硬件/软件(HW / SW)协同验证策略以调试所提出的体系结构。本文介绍了图形文件作为传输介质。设计人员可以通过液晶显示(LCD)面板在各种环境中验证解码结果。

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