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Backlog and Delay Reasoning in HARQ System

机译:HARQ系统中的积压和延迟推理

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Recently, hybrid-automatic-repeat-request (HARQ) systems have been favored in particular state-of-the-art communications systems since they provide the practicality of error detections and corrections aligned with repeat-requests when needed at receivers. The queueing characteristics of these systems have taken considerable focus since the current technology demands data transmissions with a minimum delay provisioning. In this paper, we investigate the effects of physical layer characteristics on data link layer performance in a general class of HARQ systems. Constructing a state transition model that combines queue activity at a transmitter and decoding efficiency at a receiver, we identify the probability of clearing the queue at the transmitter and the packet-loss probability at the receiver. We determine the effective capacity that yields the maximum feasible data arrival rate at the queue under quality-ofservice constraints. In addition, we put forward non-asymptotic backlog and delay bounds. Finally, regarding three different HARQ protocols, namely Type-I HARQ, HARQ-chase combining (HARQ-CC) and HARQ-incremental redundancy (HARQ-IR), we show the superiority of HARQ-IR in delay robustness over the others. However, we further observe that the performance gap between HARQ-CC and HARQ-IR is quite negligible in certain cases. The novelty of our paper is a general cross-layer analysis of these systems, considering encoding/decoding in the physical layer and delay aspects in the data-link layer.
机译:近来,混合自动重复请求(HARQ)系统在特定的最新通信系统中受到青睐,因为它们在接收器需要时提供了与重复请求对准的错误检测和校正的实用性。这些系统的排队特性已受到相当大的关注,因为当前技术要求以最小的延迟供应来进行数据传输。在本文中,我们研究了一般类别的HARQ系统中物理层特性对数据链路层性能的影响。构建一个结合了发送器队列活动和接收器解码效率的状态转换模型,我们确定了清除发送器队列的概率和接收器的丢包概率。我们确定在服务质量约束下产生最大可行数据到达队列的有效容量。此外,我们提出了非渐近积压和时滞界限。最后,针对三种不同的HARQ协议,即Type-I HARQ,HARQ-Chase合并(HARQ-CC)和HARQ-增量冗余(HARQ-IR),我们展示了HARQ-IR在延迟鲁棒性方面优于其他协议。但是,我们进一步观察到,在某些情况下,HARQ-CC和HARQ-IR之间的性能差距可以忽略不计。本文的新颖之处在于对这些系统进行了一般的跨层分析,其中考虑了物理层中的编码/解码和数据链路层中的延迟方面。

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