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A robust RAM-THP architecture for downlink multiuser MISO transmission with user scheduling

机译:具有用户调度的下行链路多用户杂项传输的强大RAM-THP架构

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A robust RAM-THP architecture for Zero-Forcing Tomlinson-Harashima Precoding (ZF-THP) for multi-user transmission in a multiple-input-single-output (MU-MISO) system is proposed with user scheduling and Convolutional Turbo Coding (CTC). The proposed architecture is developed to improve the rate of the system. A semi-optimal user-selection scheme is considered to make the aggregate channel matrix used by ZF-THP full rank and increase the robustness of THP under channel estimation error. The impact of the imperfect channel state information (CSI) due to block transmission is also considered. Simulation results reveal that the proposed scheduling procedure significantly improves the BER performance of the system especially in high SNR regime.
机译:提出了一种用于多用户传输的零强迫Tomlinson-Harashima预编码(ZF-THP)的强大的RAM-THP架构,用于多用户传输(MU-MISO)系统中的用户调度和卷积涡轮增压涡轮编码(CTC )。建议的架构开发以提高系统的速率。半最佳用户选择方案被认为是通过ZF-THP全秩使用的聚合信道矩阵,并在信道估计误差下提高THP的鲁棒性。还考虑了由于块传输引起的不完美信道状态信息(CSI)的影响。仿真结果表明,建议的调度程序显着提高了系统的BER性能,尤其是高SNR制度。

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