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Improved non-uniform selecting encoding algorithm for fountain codes with short code-length

机译:改进了具有短代码长度的喷泉码的非均匀选择编码算法

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Fountain codes are rateless and they can transmit information reliably and efficiently without knowing a priori knowledge of the channel. However, the performance of fountain codes decreases dramatically when code length is shortened. In order to improve the transmission reliability of fountain codes with short code-length, the adjustment among sets non-uniform selecting (ASNS) encoding algorithm is proposed. In ASNS algorithm, the robust soliton degree (RSD) distribution is modified to avoid source symbols imperfect coverage, and some operations on source symbols collections are done to change the probability of source symbols involved in encoding. Simulation consequences show that, under different channel conditions, the proposed ASNS algorithm can achieve much lower decoding failure rate than traditional uniform selecting algorithm and the doping and non-uniform selecting (DNS) algorithm with code-length at 100 and 500.
机译:喷泉代码不是没有的,并且它们可以在不知道信道的先验知识的情况下可靠且有效地传输信息。然而,当缩短代码长度时,喷泉代码的性能会显着降低。为了提高具有短代码长度的喷泉码的传输可靠性,提出了设置不均匀选择(ASN)编码算法之间的调整。在ASN算法中,修改了鲁棒孤子度(RSD)分布以避免源符号不完美覆盖,并且完成源符号集合的一些操作以改变编码所涉及的源符号的概率。模拟后果表明,在不同的信道条件下,所提出的ASN算法可以实现比传统均匀选择算法的解码失效率大得多,并且在100和500处具有码长的掺杂和不均匀选择(DNS)算法。

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