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SOVA based decoding of double-binary turbo convolutional code

机译:基于SOVA的双二进制Turbo卷积码解码

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The channel encoder is incorporated in communication system to mitigate the effects of distortion, attenuation and fading as may be experienced by the transmitted signal. In this article we have discussed about circular recursive systematic convolutional (CRSC) based turbo codes and their bi-directional soft output viterbi algorithm (SOVA) decoding approach. The bi-directional SOVA [10] is considered in view of its better performance and implementation complexity trade-off. Necessary changes in basic message passing equations of bi-directional SOVA has been introduced, when the double binary CRSC codes are considered instead of the classical binary turbo codes. Double binary CRSC code provides significant error-correcting performance while not suffering from the well-known bit error rate (BER) floor of classical binary turbo codes. Decoding of these circular codes requires a prologue decoder, prior to the actual trellis decoding, to estimate the initial state. A prologue-decoding algorithm for double-binary CRSC code has also been proposed. Prologue decoding plays a very important role in assessing the circulation state of the encoder for a CRSC codes [4]. Efficient determination of circulation state through prologue decoding helps in achieving impressive error performance. Insight into the process of prologue decoding is also useful in reducing average power dissipation in digital implementation of such turbo codecs. The design issues related to prologue decoding and their effects on error performance have also been discussed in this paper. It has been shown that, the performance of prologue decoder does not depend much on prologue length. Adequate simulation results have been included.
机译:信道编码器被并入通信系统中以减轻传输信号可能经历的失真,衰减和衰落的影响。在本文中,我们讨论了基于循环递归系统卷积(CRSC)的Turbo码及其双向软输出维特比算法(SOVA)解码方法。考虑到双向SOVA [10]具有更好的性能和实现复杂性之间的折衷。当考虑使用双二进制CRSC码代替传统的二进制Turbo码时,已经引入了双向SOVA的基本消息传递方程式的必要更改。双二进制CRSC代码可提供显着的纠错性能,而不会遭受经典二进制Turbo代码的众所周知的误码率(BER)底限。这些循环码的解码在实际网格解码之前需要序言解码器来估计初始状态。还提出了双二进制CRSC码的序言解码算法。序言解码在评估CRSC码的编码器循环状态中起着非常重要的作用[4]。通过序言解码有效地确定循环状态有助于实现令人印象深刻的错误性能。对序言解码过程的深入了解对于减少此类Turbo编解码器的数字实现中的平均功耗也很有用。本文还讨论了与序言解码有关的设计问题及其对错误性能的影响。已经表明,序言解码器的性能在很大程度上不取决于序言长度。包括了足够的仿真结果。

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