多信道通信系统的混合ARQ协议

Qian Li, Chun-Xiang Chen
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引用次数: 4

摘要

针对多并行信道的数据通信系统,提出了一种新的混合ARQ误差控制方案。接收方应该有一些固定大小的缓冲区(称为重排序缓冲区),用于临时存储正确接收的非顺序数据包。混合ARQ方案是Go-Back-N ARQ协议和选择性重复ARQ协议的结合。系统在SR-ARQ协议下运行,同时接收器仍有一些可用的缓冲区用于即将到来的数据包。相反,系统在Go-Back-N ARQ协议下运行,当重排序缓冲区完全被无序接收的数据包占用时。我们描述了所提出的混合ARQ方案的详细操作,并在系统有两个或三个不同信道的假设下评估了系统性能(主要是吞吐量效率)。我们展示了各种特征对吞吐量效率的影响,并举例说明了不同条件下的吞吐量效率,如信道数,信道延迟等。计算机仿真结果表明,在一定条件下,过多地使用多个信道会降低吞吐量效率,在接收端引入缓冲区是一种非常有效的解决方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Hybrid ARQ Protocol for the Communication System with Multiple Channels
In this paper, we propose a new hybrid ARQ error control scheme for the data communication system with multiple parallel channels. The receiver is supposed to have some fixed size of buffers (called resequecing buffer) which are used to temporarily store the packets that are correctly received out of sequence. The hybrid ARQ scheme is a combination of Go-Back-N ARQ and Selective-Repeat ARQ protocols. The system operates under the SR-ARQ protocol while there are still some available buffers for the upcoming packets at the receiver. Reversely, the system operates under the Go-Back-N ARQ protocol when the resequencing buffers are totally occupied by the packets which are received out of sequence. We describe the detailed operations of the presented hybrid ARQ scheme and evaluate the system performance (mainly throughput efficiency) under the assumption that the system has two or three different channels. We show the influences of various features on the throughput efficiency and illustrate it at different conditions, such as the number of channels, delay of channels etc. Based on the results of computer simulation, it is clear that throughput efficiency would be reduced by unduly using multiple channels at certain conditions, and introducing buffers at receiver is extremely efficacious as the way to deal with the problem.
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