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Interleaved Polar (I-Polar) Codes

机译:交错极性(I-Polar)代码

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By inserting interleavers between intermediate stages of the polar encoder, a new class of polar codes, termed interleaved polar (i-polar) codes, is proposed. By the uniform interleaver assumption, we derive the weight enumerating function (WEF) and the input-output weight enumerating function (IOWEF) averaged over the ensemble of i-polar codes. The average WEF can be used to calculate the upper bound on the average block error rate (BLER) of a code selected at random from the ensemble of i-polar codes. Also, we propose a concatenated coding scheme that employs P high rate codes as the outer code and Q i-polar codes as the inner code with an interleaver in between. The average WEF of the concatenated code is derived based on the uniform interleaver assumption. Simulation results show that BLER upper bounds can well predict BLER performance levels of the concatenated codes. The results show that the performance of the proposed concatenated code with P = Q = 2 is better than that of the CRC-aided i- polar code with P = Q = 1 of the same length and code rate at high signal-to-noise ratios ( SNRs). Moreover, the proposed concatenated code allows multiple decoders to operate in parallel, which can reduce the decoding latency and hence is suitable for ultra-reliable low-latency communications (URLLC).
机译:通过在极性编码器的中间阶段之间插入交织器,提出了一种新的极性代码,称为交错的极性(I-极极)代码。通过统一的交织器假设,我们得出了重量枚举函数(WEF)和输入 - 输出权重枚举函数(IOWEF)在I-Polar代码的集合上取平均。平均WEF可用于计算从I-Polar代码的集合中随机选择的代码的平均块错误率(BLER)上的上限。此外,我们提出了一种连接的编码方案,该编码方案采用P高速率代码作为外部代码和Q I-Polar代码作为与之间的交织器的内部代码。基于统一的交织器假设导出级联代码的平均WEF。仿真结果表明,BLER上限可以很好地预测级联代码的BLER性能水平。结果表明,具有P = Q = 2的提出的连接代码的性能优于CRC辅助I-极性代码的P = Q = 1在高信噪比下的CRC辅助I-极性代码比率(SNRS)。此外,所提出的级联代码允许多个解码器并行操作,这可以降低解码延迟,因此适用于超可靠的低延迟通信(URLLC)。

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