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Parallel concatenation of recursive systematic convolutional codes with transmission of interleaved set

机译:Parallel concatenation of recursive systematic convolutional codes with transmission of interleaved set

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In this work, a scheme for the parallel concatenation of convolutional codes is proposed. The systematic and interleaved sets are encoded. Unlike conventional turbo codes, however, both encoded sequences are concatenated and transmitted. At the receiving side, the first half of the corrupted sequence (corresponding to its encoded counterpart at the transmission side) is used as input to a soft-in soft-out (SISO) decoder. The second half is, in a similar manner, used by a second SISO decoder. These two decoders then use the maximum a-posteriori (MAP) algorithm for decoding. The key difference, however, with conventional turbo schemes, is that the channel metric is not removed when computing the extrinsic information for the first iteration. This is made possible since both decoders have access to an independently corrupted set. In the sequel, there is almost no gap in the performance with increased signal to noise ratio. In addition, for the remaining iterations, the proposed scheme employs conventional decoding and makes use of an inherent stopping criterion that enables the decoding procedure to be stopped once both decoders converge to the same sequence. Thus, the system makes an efficient use of iterations while reducing the computing resources required for decoding.
机译:本文提出了一种卷积码并行级联方案。对系统集和交织集进行编码。然而,与传统的turbo码不同,这两种编码序列都是级联和传输的。在接收端,损坏序列的前半部分(对应于其在传输端的编码对应物)被用作软输入软输出(SISO)解码器的输入。以类似的方式,后半部分由第二个SISO解码器使用。然后,这两个解码器使用最大后验概率(MAP)算法进行解码。然而,与传统turbo方案的关键区别在于,在计算第一次迭代的外部信息时,没有去除信道度量。这是可能的,因为两个解码器都可以访问独立损坏的集。在续集中,随着信噪比的提高,性能几乎没有差距。此外,对于剩余的迭代,所提出的方案采用常规解码,并利用固有的停止准则,使得一旦两个解码器收敛到同一序列,解码过程就停止。因此,该系统有效地利用了迭代,同时减少了解码所需的计算资源。

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