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New Construction of Rate-Compatible Block-Type Low-Density Parity-Check Codes Using Splitting

机译:使用拆分的速率兼容块型低密度奇偶校验码的新构造

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In this paper, we construct rate-compatible block-type low-density parity-check (B-LDPC) codes using splitting that cover a wide range of code rates from 1/3 to 4/5. They outperform other rate-compatible B-LDPC codes for all rates and can be decoded conveniently and efficiently. A strong motivation for proposing splitting scheme comes from the observation that the quality of the initial transmission is the most important factor to achieve high throughput of type-II HARQ. Proposed scheme builds low-rate codes from high-rate codes by splitting rows of the given LDPC parity-check matrix. Thus, rate-compatible LDPC codes obtained by splitting have good FER (frame error rate) performance in the first transmission. Contrary to other rate-control methods such as puncturing, shortening, and extending, the splitting algorithm not only needs smaller number of operations but also shows faster decoding convergence speed since more efficient Tanner graph is used for the decoding
机译:在本文中,我们使用拆分来构造速率兼容的块型低密度奇偶校验(B-LDPC)码,该拆分覆盖了从1/3到4/5的广泛码率。它们在所有速率上都优于其他速率兼容的B-LDPC码,并且可以方便,高效地进行解码。提出分裂方案的强烈动机来自以下观察:初始传输的质量是实现II型HARQ高吞吐量的最重要因素。提议的方案通过分割给定的LDPC奇偶校验矩阵的行,从高速率代码构建低速率代码。因此,通过分割获得的速率兼容的LDPC码在第一传输中具有良好的FER(帧错误率)性能。与其他速率控制方法(例如打孔,缩短和扩展)相反,该分割算法不仅需要较少的运算量,而且由于使用了更高效的Tanner图进行解码,因此显示出了更快的解码收敛速度。

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