Combined iterative demapping and decoding for coded UWB-IR systems

K. Takizawa, R. Kohno
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引用次数: 3

Abstract

This paper presents a novel decoding strategy, called combined iterative demapping/decoding (CIDD), for coded ultra wideband impulse radio (UWB-IR) systems. From the viewpoint of coding, coded UWB-IR systems can be viewed as a class of serially concatenated coding, because channel encoder and pulse mapper in the UWB-IR systems plays a role of outer and inner encoder in serial concatenated coding, respectively. For serially concatenated coding, it is well known that iterative decoding between the inner and outer decoder brings additional coding gain by using a soft-in/soft-out (SISO) decoding algorithm. In this paper, we derive a SISO algorithm for pulse demapper based on a max log-maximum a posteriori probability (MAP) algorithm to make the CIDD applicable, and then we show that this CIDD strategy improves the error rate performance with a reasonable complexity from simulation results. By applying the CIDD, larger coding gain is achieved with less computational complexity than turbo coded systems.
编码UWB-IR系统的组合迭代解映射与解码
针对编码超宽带脉冲无线电(UWB-IR)系统,提出了一种新的译码策略——联合迭代解映射/译码(CIDD)。从编码的角度来看,编码的UWB-IR系统可以看作是一类串行级联编码,因为UWB-IR系统中的信道编码器和脉冲映射器在串行级联编码中分别扮演着外部编码器和内部编码器的角色。对于串行级联编码,众所周知,内部和外部解码器之间的迭代解码使用软入/软出(SISO)解码算法带来额外的编码增益。本文提出了一种基于最大对数-最大后验概率(MAP)算法的脉冲demapper的SISO算法,使CIDD适用于脉冲demapper,并通过仿真结果表明,该CIDD策略在合理的复杂度下提高了错误率性能。通过应用CIDD,可以获得比涡轮编码系统更大的编码增益和更低的计算复杂度。
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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