A flexible state-metric recursion unit for a multi-standard BCJR decoder

M. Rovini, Giuseppe Gentile, L. Fanucci
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引用次数: 4

Abstract

This paper describes the architecture of a flexible and reconfigurable processor for the computation of the state-metric recursion in a multi-standard BCJR decoder. The unit can serve binary as well as duo-binary codes with any number of states. The architecture is arranged into a cluster of state-metric processors plus two multiplexing networks for feedback and normalization, configured on-the-fly for the code in use. An optimized solution is presented allowing the support of every code among 8-state duo-binary, 8-state binary and 2-state binary codes, i.e., of every Turbo and LDPC code defined by the modern communication standards. The logical synthesis on different CMOS technologies shows that the architecture attains a maximum clock frequency of 450 MHz. Finally, the complexity overhead of such a flexible design is only about 18% w.r.t. optimized single-standard solutions.
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用于多标准BCJR解码器的灵活状态度量递归单元
本文介绍了一种用于多标准BCJR解码器中状态度量递归计算的灵活可重构处理器的体系结构。该单元可以服务于二进制以及具有任意数量状态的双二进制代码。该体系结构被安排成一个状态度量处理器集群,加上两个用于反馈和规范化的多路复用网络,并为正在使用的代码动态配置。提出了一种优化方案,允许支持8态双二进制、8态二进制和2态二进制中的所有码,即现代通信标准定义的所有Turbo码和LDPC码。对不同CMOS技术的逻辑综合表明,该架构的时钟频率最高可达450 MHz。最后,这种灵活设计的复杂性开销仅为优化的单一标准解决方案的18%左右。
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