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Asymptotic Tradeoff between Cross-Layer Goodput Gain and Outage Diversity in OFDMA Systems with Slow Fading and Delayed CSIT

机译:浅层衰落和延迟CSIT跨摩尔系统跨层矿产增益与中断多样性的渐近权衡

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In this paper, we consider on the asymptotic tradeoff analysis between the system goodput gain and the packet outage diversity gain in cross-layer OFDMA systems with slow frequency selective fading and delayed CSIT. The OFDMA cross-layer design with delayed CSIT is modeled as an optimization problem where the rate adaptation, power adaptation and subcarrier allocation policies are designed to optimize the system goodput (b/s/Hz successfully received by the mobiles). We derived simple closed-form expressions for the power and rate allocations as well as the asymptotic order of growth in system goodput for general CSIT error (σ{sub}e){sup}2. We found that the system goodput scales in the order of O(log(1-(σ{sub}e){sup}2/N{sub}d (log K + N{sub}d log log K))) for large K where N{sub}d is the packet outage diversity and K is the number of user in the cross-layer OFDMA system. Hence, double exponentially larger K is needed to compensate for the penalty in system goodput gain due to CSIT errors (σ{sub}e){sup}2 or packet outage diversity N{sub}d for large N{sub}d.
机译:在本文中,我们考虑了系统良品增益与慢频选择性衰落和延迟CSIT的跨层系统中的系统净化增益与分组中断分集增益的渐近权衡分析。具有延迟CSIT的OFDMA跨层设计被建模为优化问题,其中速率适应,功率适应和子载波分配策略旨在优化系统净化普测(B / S / Hz由Mobiles成功接收)。我们派生了用于电力和速率分配的简单闭合表达式,以及一般CSIT错误(Σ{sub} e){sup} 2的系统良品中增长的渐近顺序。我们发现系统良品按O(log(σ{sub} e){sup} 2 / n {sub} d(log k + n {sub} d log log k))的顺序缩放))大K其中n {sub} d是分组中断分集,k是跨层系统中的用户数。因此,由于CSIT错误(Σ{Sub} e){sup} 2或大n} d的分组中断分集N {sub} d,需要补偿系统良品增益中的惩罚。

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