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首页> 外文期刊>IEEE Transactions on Communications >Optimal Power Allocation for Hybrid ARQ with Chase Combining in i.i.d. Rayleigh Fading Channels
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Optimal Power Allocation for Hybrid ARQ with Chase Combining in i.i.d. Rayleigh Fading Channels

机译:i.i.d中具有Chase组合的混合ARQ的最佳功率分配瑞利衰落信道

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摘要

We consider the optimization of Chase combining (CC)-based hybrid-automatic repeat request (HARQ) schemes with a limit on the maximum number of retransmissions. We formulate two optimization problems: (i) minimizing the packet drop probability (PDP) under a total average transmit power constraint, and (ii) minimizing the average transmit power under a fixed PDP constraint. Towards solving these equivalent optimization problems, we provide a closed-form expression for the outage probability of a CC-HARQ scheme. We then show that solving the optimization problems using an exact expression of the outage probability becomes complex with an increase in the maximum number of retransmissions. We propose an alternative approach in which we approximate the optimization problems by using an approximate outage probability expression and formulate the two optimization problems as two equivalent geometric programming problems (GPPs), which can be solved efficiently even for a large limit on the maximum number of retransmissions. The results show that the optimal power allocation solution provides significant gains over the equal power allocation solution. For PDP values below 10^{-3}, the optimal solution provided by the GPP approach has a performance close to that of the solution provided by solving the optimization problem exactly using nonlinear optimization techniques.
机译:我们考虑优化基于Chase合并(CC)的混合自动重发请求(HARQ)方案,并限制最大重传次数。我们提出两个优化问题:(i)在总平均发射功率约束下最小化丢包概率(PDP),以及(ii)在固定PDP约束条件下最小化平均发射功率。为了解决这些等效的优化问题,我们为CC-HARQ方案的中断概率提供了一种封闭形式的表达式。然后,我们表明,使用中断概率的精确表达式来解决优化问题会随着最大重传次数的增加而变得复杂。我们提出了一种替代方法,其中我们通过使用近似中断概率表达式来近似优化问题,并将这两个优化问题表述为两个等效几何规划问题(GPPs),即使最大数量的最大限制也可以有效解决。重传。结果表明,最佳功率分配解决方案比同等功率分配解决方案提供了可观的收益。对于低于10 ^ {-3}的PDP值,GPP方法提供的最佳解决方案的性能接近于通过使用非线性优化技术精确解决优化问题而提供的解决方案的性能。

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