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首页> 外文期刊>IEICE Transactions on fundamentals of electronics, communications & computer sciences >Multi-Stage Threshold Decoding for Self-Orthogonal Convolutional Codes
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Multi-Stage Threshold Decoding for Self-Orthogonal Convolutional Codes

机译:自正交卷积码的多阶段阈值解码

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This paper describes a least complex, high speed decoding method named multi-stage threshold decoding (MTD-DR). Each stage of MTD-DR is formed by the traditional threshold decoder with a special shift register, called difference register (DR). After flipping each information bit, DR helps to shorten the Hamming and the Euclidian distance between a received word and the decoded codeword for hard and soft decoding, respectively. However, the MTD-DR with self-orthogonal convolutional codes (SOCCs), type 1 in this paper, makes an unavoidable error group, which depends on the tap connection patterns in the encoder, and limits the error performance. This paper introduces a class of SOCCs type 2 which can breakdown that error group, as a result, MTD-DR gives better error performance. For a shorter code (code length = 4200), hard and soft decoding MTD-DR achieves 4.7 dB and 6.5 dB coding gain over the additive white Gaussian noise (AWGN) channel at the bit error rate (BER) 10~(-5), respectively. In addition, hard and soft decoding MTD-DR for a longer code (code length = 80000) give 5.3 dB and 7.1 dB coding gain under the same condition, respectively. The hard and the soft decoding MTD-DR experiences error flooring at high E_b/N_0 region. For improving overall error performance of MTD-DR, this paper proposes parity check codes concatenation with soft decoding MTD-DR as well.
机译:本文介绍了一种称为多级阈值解码(MTD-DR)的最不复杂的高速解码方法。 MTD-DR的每一级都由传统的阈值解码器构成,带有特殊的移位寄存器,称为差分寄存器(DR)。在翻转每个信息位之后,DR有助于缩短分别用于硬解码和软解码的接收字与已解码码字之间的汉明距离和欧氏距离。但是,本文采用类型为1的具有自正交卷积码(SOCC)的MTD-DR产生了不可避免的误差组,该误差组取决于编码器中的抽头连接模式,并限制了误差性能。本文介绍了一类SOCC类型2,它可以细分该错误组,因此,MTD-DR具有更好的错误性能。对于较短的代码(代码长度= 4200),硬和软解码MTD-DR在误码率(BER)为10〜(-5)时,在加性白高斯噪声(AWGN)信道上实现4.7 dB和6.5 dB的编码增益。 , 分别。此外,在相同条件下,对于较长代码(代码长度= 80000)的硬解码和软解码MTD-DR分别提供5.3 dB和7.1 dB的编码增益。硬解码和软解码MTD-DR在较高的E_b / N_0区域会遇到错误基底。为了提高MTD-DR的总体错误性能,本文还提出了奇偶校验码与软解码MTD-DR的级联。

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