A hybrid-ARQ protocol with adaptive rate error control

Hui Zhao, T. Sato, I. Kimura
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引用次数: 2

Abstract

This paper presents an adaptive rate error control scheme for digital communication over time-varying channels. The cyclic code with majority-logic decoding is used in a cascaded way as an inner code to create a simple and powerful hybrid-ARQ error control scheme. Inner code is used only for error correction and the outer code is used for both error correction and error detection. When an error is detected, retransmission is required. The unsuccessful packets are not discarded as with conventional schemes, but are combined with their retransmitted copies. Approximations for the throughput efficiency and the undetectable error probability are given. A high reliability coupled with a simple high-speed implementation makes it suitable for high data rate error control over both stationary and non-stationary channels. Adaptive error control scheme becomes the best solution for time-varying channels when the optimum code is selected according to the actual channel conditions to enhance the system performance. The main feature of this system is that the basic structure of the encoder and decoder need not be modified while the error-correction capability of the code increases. Results of a comparative analysis show that the proposed scheme outperforms other similar ARQ protocols.<>
一种自适应误码率控制的混合arq协议
提出了一种时变信道数字通信的自适应误码率控制方案。将多数逻辑译码的循环码以级联的方式作为内码,创建了简单而强大的混合arq错误控制方案。内部码仅用于纠错,外部码用于纠错和错误检测。当检测到错误时,需要重新传输。不成功的数据包不会像传统方案那样被丢弃,而是与它们的重传副本结合在一起。给出了吞吐量效率和不可检测误差概率的近似表达式。高可靠性加上简单的高速实现使其适用于固定和非固定信道的高数据速率错误控制。根据信道的实际情况选择最优编码以提高系统性能,自适应误差控制方案成为时变信道的最佳解决方案。该系统的主要特点是不需要修改编解码器的基本结构,而提高了码的纠错能力。对比分析结果表明,该方案优于其他类似的ARQ协议
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