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Optimal Power Assignment for Minimizing the Average Total Transmission Power in Hybrid-ARQ Rayleigh Fading Links

机译:混合ARQ瑞利衰落链路中最小化平均总传输功率的最佳功率分配

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摘要

We address the fundamental problem of identifying the optimal power assignment sequence for hybrid automatic-repeat-request (H-ARQ) communications over quasi-static Rayleigh fading channels. For any targeted H-ARQ link outage probability, we find the sequence of power values that minimizes the average total expended transmission power. We first derive a set of equations that describe the optimal transmission power assignment and enable its exact recursive calculation. To reduce calculation complexity, we also develop an approximation to the optimal power sequence that is close to the numerically calculated exact result. The newly founded power allocation solution reveals that conventional equal-power H-ARQ assignment is far from optimal. For example, for targeted outage probability of 10^{-3} with a maximum of two transmissions, the average total transmission power with the optimal assignment is 9 dB lower than the equal-power protocol. The difference in average total power cost grows further when the number of allowable retransmissions increases (for example, 11 dB gain with a cap of 5 transmissions) or the targeted outage probability decreases (27 dB gain with outage probability 10^{-5} and transmissions capped at 5). Interestingly, the optimal transmission power assignment sequence is neither increasing nor decreasing; its form depends on given total power budget and targeted outage performance levels. Extensive numerical and simulation results are presented to illustrate the theoretical development.
机译:我们解决了一个基本问题,即为准静态瑞利衰落信道上的混合自动重复请求(H-ARQ)通信确定最佳功率分配序列。对于任何目标H-ARQ链路中断概率,我们找到使平均总总发射功率最小的功率值序列。我们首先导出一组描述最佳传输功率分配的方程,并进行精确的递归计算。为了降低计算复杂度,我们还对近似于数值计算出的精确结果的最佳功率序列进行了近似计算。新近建立的功率分配解决方案表明,传统的等功率H-ARQ分配远非最佳。例如,对于最大两次传输的目标中断概率为10 ^ {-3},具有最佳分配的平均总传输功率比等功率协议低9 dB。当允许的重传次数增加(例如,以5次传输为上限,增益为11 dB)或目标中断概率降低(中断概率为10 ^ {-5}时,增益为27 dB)时,平均总功率成本的差异会进一步增加。传输上限为5)。有趣的是,最佳发射功率分配顺序既不增加也不减少。它的形式取决于给定的总功率预算和目标停机性能水平。给出了广泛的数值和仿真结果,以说明理论发展。

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