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Multi-RS Concatenated Polar Codes with Enhanced Interleaving and List Decoding

机译:具有增强型交错和列表解码的多级连接彩色代码

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Polar codes are the first provable capacity-achieving channel codes. Despite the splendid performance of long Polar codes, short Polar codes have relatively poor performance compared with other modern channel coding schemes (e.g., Turbo codes and LDPC). In this paper, we explore some practical methods to improve the performance of Polar codes with short to moderate codeword lengths. First, we use Reed Solomon (RS) codes as outer codes. With a specific interleaving strategy, we can concatenate multiple RS codes with one frame of Polar codes. Combining a strategy of allocating unequal RS code rates with the concatenation, different levels of protection are assigned based on the error pattern of successive cancellation list (SCL) decoders. Thus, the finite length performance will certainly be enhanced for this encoding scheme. Meanwhile, the memory size that the original SCL decoding procedure requires is reduced, and the increment of overall decoding complexity is small. Additionally, we propose an intra-frame interleaver to further enhance the performance by dispersing errors. Finally, we designed a list decoding scheme for the proposed multi-RS concatenated Polar codes. Depending on the soft information generated by an SCL decoder, we calculated the reliability of each RS symbol and conducted soft RS decoding. So, the overall performance was enhanced under this joint decoding strategy. Simulation results indicate that the bit error rate (BER) performance of short Polar codes can be well improved.
机译:极性代码是第一个可提供的能力实现通道代码。尽管具有长度的极性代码的辉煌性能,但与其他现代通道编码方案(例如,Turbo Codes和LDPC)相比,短的极性代码具有相对较差的性能。在本文中,我们探讨了一些实用方法,以提高极性代码的性能,短到适度的码字长度。首先,我们使用Reed Solomon(RS)代码作为外部代码。通过特定的交织策略,我们可以使用一帧帧极性代码连接多个RS代码。将分配不等RS码率的策略与串联分配,基于连续取消列表(SCL)解码器的错误模式分配不同级别的保护。因此,对于这种编码方案,肯定会增强有限长度的性能。同时,原始SCL解码过程所需的内存大小减小,并且整体解码复杂度的增量很小。另外,我们提出了一种帧内交织器,以通过分散误差来进一步提高性能。最后,我们为所提出的多Rs连接极性代码设计了一个列表解码方案。根据SCL解码器生成的软信息,我们计算了每个RS符号的可靠性并进行软RS解码。因此,在此联合解码策略下,整体性能得到了增强。仿真结果表明,短极代码的误码率(BER)性能可以得到很好的提高。

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