A Proposal for Service Differentiation by a Link Layer Protocol Based on SR ARQ and Its Evaluation

T. Shikama, T. Matsuda, Y. Terashima, Takashi Watanabe, T. Mizuno
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引用次数: 1

Abstract

This paper studies the situation where multiple IP flows are aggregated over a single wireless channel and an error recovery by retransmissions is performed by Selective-Repeat (SR) ARQ. We propose MQ-PFRS (Multi-QoS Per-Flow Resequencing) ARQ that provides a differentiated service for an IP flow depending on its QoS class, such as real-time or non-real-time. MQ-PFRS ARQ eliminates interferences among IP flows by resequencing received packets independently for each IP flow. It also controls the maximum packet delay by limiting the persistency of retransmissions and the maximum resequencing time for each packet. This paper also presents an analysis of the probability distribution of real-time packet delays. Simulation results show that the delay variation of real-time traffic is effectively controlled by proposed MQ-PFRS ARQ and the packet delay distribution is quite consistent with the results of the analysis. This means that MQ-PFRS is effective for handling multiple QoS classes of IP flows and the quality of real-time traffic transferred by the scheme can be predicted by the analysis.
一种基于SR ARQ的链路层协议服务区分方案及其评价
本文研究了在单个无线信道上聚合多个IP流并通过选择性重复(SR) ARQ进行重传错误恢复的情况。我们提出MQ-PFRS (Multi-QoS Per-Flow Resequencing) ARQ,它根据IP流的QoS类别(如实时或非实时)提供差异化服务。MQ-PFRS ARQ通过对每个IP流独立地重新排序接收到的数据包来消除IP流之间的干扰。它还通过限制重传的持久性和每个数据包的最大重排序时间来控制最大数据包延迟。本文还分析了实时数据包延迟的概率分布。仿真结果表明,所提出的MQ-PFRS ARQ有效地控制了实时流量的时延变化,数据包的时延分布与分析结果非常吻合。这意味着MQ-PFRS可以有效地处理多个QoS类型的IP流,并且通过分析可以预测该方案传输的实时流量的质量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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