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Robust THP Design for Energy Efficiency of Multibeam Satellite Systems with Imperfect CSI

机译:具有不完美CSI的多芯卫星系统能效强大的THP设计

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In this letter, we investigate a robust zero-forcing (ZF) Tomlinson-Harashima Precoding (THP) scheme for multibeam satellite downlink systems to improve the energy efficiency (EE) when the channel state information (CSI) at the transmitter is imperfect. By using a norm-bounded error (NBE) model with unknown statistical characterization, the worst case EE optimization problem under transmit power constraint is solved with two steps. Firstly, the optimal CSI uncertainty parameter minimizing the EE is obtained, then sequential convex approximation (SCA) is used to obtain the solution via a nested iteration method. The proposed robust algorithm achieves better EE performance in comparison with the nonrobust one in the literature in the presence of CSI error, which can be shown from simulation results.
机译:在这封信中,我们研究了一种强大的零强制(ZF)Tomlinson-Harashima预编码(THP)方案,用于多阵风卫星下行链路系统,以改善发射机处的信道状态信息(CSI)不完美时的能效(EE)。通过使用具有未知统计表征的常态误差(NBE)模型,通过两个步骤解决了传输功率约束下的最坏情况的最坏情况。首先,获得最小化EE的最佳CSI不确定性参数,然后顺序凸近似(SCA)通过嵌套迭代方法获得解决方案。所提出的稳健算法与在CSI误差的存在中的文献中的非粗糙算法相比,实现了更好的EE性能,这可以从仿真结果中显示。

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