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首页> 外文期刊>Signal Processing, IEEE Transactions on >Optimal Joint Spatial and Temporal Power Adaptation for Space-Time-Coded Systems With Imperfect CSI
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Optimal Joint Spatial and Temporal Power Adaptation for Space-Time-Coded Systems With Imperfect CSI

机译:具有不完善CSI的时空编码系统的最佳联合时空功率适应

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In this correspondence, a joint optimization of spatio-temporal (S-T) power allocation to minimize the average bit error rate (BER) subject to an average power constraint is developed for beamforming orthogonal space-time block coded multiantenna systems over flat Rayleigh fading channels in the presence of imperfect channel state information at the transmitter (CSIT). Compared to the spatial-only (S-O) power allocation methods, the optimal S-T strategy reduces BER significantly. It can be used as a benchmark to evaluate the existing suboptimal S-T schemes. A necessary and sufficient condition, which can determine the number of eigenbeams being used for optimal S-T power allocation without computing power allocation, is derived. This result can greatly simplify the power allocation algorithm. Numerical results show that the proposed optimal S-T algorithm has not only the best BER performance, but also the lowest computational complexity in comparison with the existing S-T strategies.
机译:在这种对应关系中,开发了一种联合时空(ST)功率分配的优化方法,以最小化受平均功率约束的平均误码率(BER),用于在平坦瑞利衰落信道上对正交空时分组编码多天线系统进行波束成形。发射机(CSIT)处存在不完善的信道状态信息。与仅空间(S-O)功率分配方法相比,最佳S-T策略可显着降低BER。它可以用作评估现有次优S-T方案的基准。得出了一个充要条件,该条件可以确定用于最佳S-T功率分配而无需计算功率分配的特征波束的数量。该结果可以大大简化功率分配算法。数值结果表明,与现有的S-T策略相比,所提出的最优S-T算法不仅具有最佳的BER性能,而且计算复杂度最低。

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