Use of extrinsic information transfer chart to predict behavior of turbo codes

T. Iliev, I. Lokshina, D. Radev
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引用次数: 5

Abstract

In this paper, we consider turbo codes that are now introduced in various international standards, including the UMTS standard for third generation personal communications and the ETSI DVB-T standard for Terrestrial Digital Video Broadcasting, and review the method of extrinsic information transfer. The convergence properties of the iterative decoding process associated with a given turbo-coding scheme are assessed using the so-called extrinsic information transfer (EXIT) chart analysis technique. This approach provides an opportunity to foresee the bit error rate (BER) of a turbo code system using only the EXIT chart. It is shown that EXIT charts are powerful tools to analyze and optimize the convergence behavior of iterative systems utilizing the turbo principle, i.e., systems exchanging and refining extrinsic information. The idea is to consider the associated SISO stages as information processors that map input a priori LLR's onto output extrinsic LLR's, the information content being obviously assumed to increase from input to output, and introduce them to the design of turbo systems without the reliance on extensive simulation. Compared with existing methods for generating EXIT functions, a suggested approach provides insight into the iterative behavior of linear turbo systems with substantial reduction in numerical complexity.
利用外部信息传递图预测涡轮码的行为
在本文中,我们考虑了目前在各种国际标准中引入的turbo码,包括用于第三代个人通信的UMTS标准和用于地面数字视频广播的ETSI DVB-T标准,并回顾了外部信息传输的方法。利用所谓的外在信息传递(EXIT)图分析技术,评估了给定涡轮编码方案下迭代解码过程的收敛性。这种方法提供了仅使用EXIT图来预测turbo码系统的误码率(BER)的机会。结果表明,EXIT图是利用涡轮原理分析和优化迭代系统收敛行为的有力工具,即系统交换和精炼外在信息。其想法是将相关的SISO阶段视为将输入先验LLR映射到输出外在LLR的信息处理器,信息内容显然假设从输入到输出增加,并将其引入涡轮系统的设计中,而不依赖于广泛的模拟。与现有的EXIT函数生成方法相比,本文提出的方法可以深入了解线性涡轮系统的迭代行为,并大大降低了数值复杂性。
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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