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Asymptotic Outage Analysis of HARQ-IR Over Time-Correlated Nakagami- Fading Channels

机译:时间相关的Nakagami衰落信道上的HARQ-IR的渐近中断分析

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In this paper, outage performance of hybrid automatic repeat request with incremental redundancy (HARQ-IR) is analyzed. Unlike prior analyses, time-correlated Nakagami- fading channel is considered. The outage analysis thus involves the probability distribution analysis of a product of multiple correlated shifted Gamma random variables and is more challenging than prior analyses. Based on the findings of the conditional independence of the received signal-to-noise ratios, the outage probability is exactly derived by using conditional Mellin transform. Specifically, the outage probability of HARQ-IR under time-correlated Nakagami- fading channels can be written as a weighted sum of outage probabilities of HARQ-IR over independent Nakagami fading channels, where the weightings are determined by a negative multinomial distribution. This result enables not only an efficient truncation approximation of the outage probability with uniform convergence but also asymptotic outage analysis to further extract clear insights, which have never been discovered for HARQ-IR even under fast fading channels. The asymptotic outage probability is then derived in a simple form, which clearly quantifies the impacts of transmit powers, channel time correlation, and information transmission rate. It is proved that the asymptotic outage probability is an inverse power function of the product of transmission powers in all HARQ rounds, an increasing function of the channel time correlation coefficients, and a monotonically increasing and convex function of information transmission rate. The simple expression of the asymptotic result enables optimal power allocation and optimal rate selection of HARQ-IR with low complexity. Finally, numerical results are provided to verify our analytical results and justify the application of the asymptotic result for optimal system design.
机译:本文分析了具有增量冗余的混合自动重发请求(HARQ-IR)的中断性能。与先前的分析不同,考虑了时间相关的Nakagami衰落信道。因此,中断分析涉及对多个相关移位的Gamma随机变量的乘积进行概率分布分析,并且比以前的分析更具挑战性。根据接收到的信噪比的条件独立性的发现,通过使用条件Mellin变换可以精确得出中断概率。具体而言,可以将时间相关的Nakagami衰落信道下的HARQ-IR中断概率记为独立Nakagami衰落信道上的HARQ-IR中断概率的加权总和,其中权重由负多项式分布确定。该结果不仅可以实现具有统一收敛的中断概率的有效截断近似,而且还可以进行渐进中断分析以进一步提取清晰的见解,即使在快速衰落信道下也从未发现过HARQ-IR。然后以一种简单的形式得出渐进式中断概率,它可以清楚地量化发射功率,信道时间相关性和信息传输速率的影响。证明渐近中断概率是所有HARQ回合中发射功率乘积的反幂函数,信道时间相关系数的增加函数,以及信息传输速率的单调增加和凸函数。渐近结果的简单表达使得具有低复杂度的最优功率分配和最优HARQ-IR速率选择成为可能。最后,提供数值结果以验证我们的分析结果并证明渐近结果在优化系统设计中的应用。

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