离散速率链路自适应中的频谱效率与反馈负载:零信息中断约束是否最优?

A. Gjendemsjø, S. D. L. K. D. Ryhove, G. Øien
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引用次数: 1

摘要

我们分析了文献中发现的两种不同的方法,用于在缓慢变化的平坦衰落无线信道上运行的自适应传输系统的吞吐量最大化,该信道在发射机处具有有限的信道状态信息。虽然这两种方法都使用有限数量的传输功率级别和容量实现代码,但它们在信道状态的量化级别数量以及是否允许信息中断方面有所不同。专注于可靠的数据通信,我们通过添加ARQ协议以跨层方式扩展了早期的工作,以便在此类中断期间接收到的数据可以重新传输。我们在平均频谱效率、中断概率和平均反馈负载方面准确地分析和比较了两种方法的性能,这里的平均反馈负载是根据反馈源的熵来定义的。数值结果表明,一般情况下,两种方法在频谱效率和反馈负荷方面存在权衡。然而,其中一种方案可以在较低的反馈负载下实现更高的吞吐量的场景也被确定。
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Spectral efficiency vs. feedback load in discrete-rate link adaptation: Is a zero information outage constraint optimal or not?
We analyze two different approaches found in the literature for throughput maximization of an adaptive transmission system operating over a slowly-varying flat-fading wireless channel with limited channel state information at the transmitter. While both approaches employ a finite number of transmission power levels and capacity-achieving codes, they differ in the number of quantization levels for the channel state, and whether or not information outage is allowed. Focusing on reliable data communications, we extend earlier works in a cross-layered fashion by adding an ARQ protocol, such that data received during such an outage can be retransmitted. We accurately analyze and compare the performance of the two approaches in terms of average spectral efficiency, probability of outage, and average feedback load, here defined in terms of the entropy of the feedback source. Numerical results show that, in general, there is a trade-off between the two approaches in terms of spectral efficiency and feedback load. However, scenarios in which one of the schemes can achieve a higher throughput at a lower feedback load are also identified.
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