基于MacLaurin系列的turbo解码器Max-Log-MAP算法的硬件实现

R. Shrestha, R. Paily
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引用次数: 4

摘要

在1993年涡轮码的出现引起了最初的兴趣之后,对硬件实现的特别关注导致了许多不同的MAP解码器修改算法。原始MAP算法在硬件实现上存在严重缺陷。为了克服这一缺点,提出了Max-Log-MAP和Log-MAP算法来降低复杂性。最近Shahram等人基于MacLaurin级数提出了一种改进的Max-Log-MAP算法,进一步降低了复杂度。然而,目前还没有关于这种基于MacLaurin级数的Max-Log-MAP算法的硬件实现报告。本文提出了基于MacLaurin级数的改进Max- Log-MAP算法的硬件结构。此外,通过将所有的乘法器替换为移位器和加法器,该架构的性能得到了提高。该解码器在有损ISI信道中具有良好的性能,对于高数据速率通信应用非常有用。最后,将所提架构的性能与Max-Log-MAP SISO解码器的硬件实现进行比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hardware implementation of Max-Log-MAP algorithm based on MacLaurin series for turbo decoder
After the initial interest caused by appearance of turbo-codes in 1993, special attention to the hardware implementation has led to many different modified algorithms for MAP decoders. The original MAP algorithm suffers from serious drawbacks in its hardware implementation. To overcome this disadvantage, Max-Log-MAP and Log-MAP algorithms have been proposed to reduce the complexity. Recently an improved Max-Log-MAP algorithm is proposed by Shahram et. al. based on MacLaurin series to further reduce the complexity. However there are no hardware implementation reported on this particular Max-Log-MAP algorithm based on MacLaurin series. In this paper, we have proposed hardware architecture for modified Max- Log-MAP algorithm using MacLaurin series. In addition, the performance of proposed architecture is improved by replacing all the multipliers with shifters and adders. This implementation is very useful for high data rate communication applications as the performance of this decoder in lossy ISI channel is very good. Finally the performance of proposed architecture is compared with hardware implementation of Max-Log-MAP SISO decoder.
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