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Adaptive Modulation and Joint Temporal Spatial Power Allocation for OSTBC MIMO Systems with Imperfect CSI

机译:CSI不完善的OSTBC MIMO系统的自适应调制和联合时空功率分配

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摘要

We propose a novel adaptive transmission scheme for space-time coded multiple-input multiple-output beamforming systems with imperfect channel state information at the transmitter, of which the signal constellation, total transmit power (temporal power), and power allocation among eigen-beams (spatial power) are jointly adapted to maximize the average spectral efficiency, subject to a target bit-error-rate and an average power constraint. The power allocation over the spatial and temporal domains makes the traditional approach of partitioning the received signal-to-noise ratio (SNR) inapplicable to the above design problem. By introducing a new variable, called as effective signal-to-noise-to-modulation ratio (ESNMR), we derive a rate-selection policy by partitioning the range of the ESNMR with an optimal set of thresholds. A closed-form temporal power control policy and a simple spatial power allocation algorithm are also obtained. Numerical results demonstrate that the new adaptive transmission scheme yields a significant performance gain over existing adaptation systems.
机译:我们针对空时编码多输入多输出波束形成系统提出了一种新颖的自适应传输方案,该系统在发射机处具有不完善的信道状态信息,其中信号星座图,总发射功率(时间功率)和本征波束之间的功率分配(空间功率)共同适用于最大化平均频谱效率,这取决于目标误码率和平均功率约束。空间和时间域上的功率分配使得划分接收到的信噪比(SNR)的传统方法不适用于上述设计问题。通过引入一个称为有效信噪比调制比(ESNMR)的新变量,我们通过将ESNMR的范围与一组最佳阈值进行划分,得出速率选择策略。还获得了封闭形式的时间功率控制策略和简单的空间功率分配算法。数值结果表明,与现有的自适应系统相比,新的自适应传输方案可显着提高性能。

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