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A Rate-Matching Concatenation Scheme of Polar Codes With Outer Reed-Solomon Codes

机译:具有外簧片型码代码的极性代码率匹配级联方案

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As a hybrid solution, RS-polar codes inherit the low encoding and decoding complexity of polar codes as well as the superior burst error-correction capability of Reed-Solomon (RS) codes. However, their code rates are limited by the inner polar codes and the outer RS codes' rate. In this letter, we present an average distributed puncturing (ADP) method and combine it with RS-polar codes to construct the rate matching scheme which can combine the advantages of concatenated codes and puncturing codes to better improve block performance and flexibility. To improve the puncturing performance, a power-level segmentation puncturing (PLSP) algorithm is proposed that can reserve a higher number of high reliability channels after puncturing. Simulation results show that the proposed algorithm outperforms the conventional algorithms at the low code rate and small transmission length. Especially, under the RS-polar scheme, the PLSP algorithm can provide over 1.32 dB performance gain at the block error rate (BLER) of 10-3 with code length M = 2400 and code rate r' = 1/3 compared with the quasi-uniform puncturing (QUP) algorithm.
机译:作为混合解决方案,RS-Polar代码继承了极性代码的低编码和解码复杂度以及Reed-Solomon(RS)代码的卓越突发误差校正能力。然而,它们的代码率受到内部极性代码和外部RS代码的限制。在这封信中,我们介绍了一个平均分布式的打孔(ADP)方法,并将其与RS-Polar码相结合,以构造速率匹配方案,可以结合连接代码和打孔码的优点,以更好地提高块性能和灵活性。为了提高穿孔性能,提出了一种功率级分割打孔(PLSP)算法,其在打孔后可以保留更高数量的高可靠性信道。仿真结果表明,该算法优于低码率和小传输长度的传统算法。特别是,在RS-极性方案下,PLSP算法可以以10-3的块误差速率(BLER)提供超过1.32 dB性能增益,其中代码长度M = 2400和码率R'= 1/3与准则相比 - 单均匀的打孔(QUP)算法。

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