带有流水线的自动重复请求协议的统计延迟界限

M. Akselrod, M. Fidler
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引用次数: 2

摘要

低延迟无线通信的最新趋势需要一种处理延迟的非遍历容量的概念。在有效容量、延迟约束容量和随机服务曲线等领域的重要研究为衰落过程、干扰和多天线系统等物理层相关方面提供了这样的结果。链路层自动重复请求协议的实际实现很少受到关注。相反,通常假设使用瞬时通道状态信息、简单的停止-等待协议或瞬时反馈进行无错误传输。在这项工作中,我们研究了在不可忽略的往返时间下处理数据包错误的管道协议。定义了一类带有流水线的自动重复请求协议的随机服务曲线模型,导出了统计等待时间和停留时间界限。我们发现了两种情况:在低至中等负载下,重传占据了逗留时间的最大部分,而在高负载下,等待时间占了逗留时间的大部分。通常,随着往返时间的增加,停止等待协议或瞬时反馈的基本情况忽略了相关影响,并且提供的估计不太准确。
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Statistical Delay Bounds for Automatic Repeat Request Protocols with Pipelining
The recent trend towards low-latency wireless communication requires a notion of non-ergodic capacity that deals with delays. Significant research in areas, such as effective capacity, delay-constrained capacity, and stochastic service curves, has contributed such results for relevant physical layer aspects, like fading processes, interference, and multiple antenna systems. Less attention has been paid to actual implementations of link layer automatic repeat request protocols. Instead, error-free transmission using instantaneous channel state information, simple stop-and-wait protocols, or instantaneous feedback are frequently assumed. In this work, we investigate protocols with pipelining that deal with packet errors under non-negligible round-trip-times. We define a stochastic service curve model of a general class of automatic repeat request protocols with pipelining and derive statistical waiting time and sojourn time bounds. We discover two regimes: under low to moderate load retransmissions cause the largest part of the sojourn time, whereas under high load the waiting time dominates the sojourn time. Generally, with increasing round-trip-time the basic cases of stop-and-wait protocols or instantaneous feedback neglect relevant effects and provide less accurate estimates.
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Enabling a Win-Win Coexistence Mechanism for WiFi and LTE in Unlicensed Bands Integrating Fractional Brownian Motion Arrivals into the Statistical Network Calculus Statistical Delay Bounds for Automatic Repeat Request Protocols with Pipelining Time Constrained Service-Aware Migration of Virtualized Services for Mobile Edge Computing [Copyright notice]
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