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Segmented successive cancellation list polar decoding with joint BCH-CRC codes

机译:具有联合BCH-CRC码的分段连续消除列表极坐标解码

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摘要

Polar codes, which have been adopted as the channel code for 3GPP eMBB control channel, are the first codes achieving the capacity of symmetric binary-input discrete memoryless channels (B-DMCs). For short length polar codes, which are favorable for control channels, CRC-aided segmented successive cancellation list (SCL) decoding can reduce the hardware complexity and memory cost. However, CRC brings no performance gain in segmented decoding. In this paper, an efficient joint decoding scheme called BCH-CRC-aided segmented SCL decoding (BC-SCL) is firstly proposed. Its HARQ refined version is also given. BCH and CRC are employed in different segments to maximize their own correction or check advantages. Numerical results on binary-input additive white Gaussian noise (BI-AWGN) channel have shown the performance gain of the proposed BC-SCL decoder. The corresponding hardware architecture is also proposed. Short-length BC-SCL decoder with (N = 128, K = 64, L = 2) is implemented with Altera Stratix V FPGA. Compared to the CRC-aided decoder, the proposed decoder requires only 76.12% ALMs with slightly increased latency. Therefore, BC-SCL scheme can highly demonstrate advantages of both BCH and CRC in polar segmented decoding.
机译:极性代码已被用作3GPP eMBB控制信道的信道代码,是实现对称二进制输入离散无记忆信道(B-DMC)容量的第一个代码。对于有利于控制信道的短长度极性码,CRC辅助分段连续消除列表(SCL)解码可以降低硬件复杂性和存储成本。但是,CRC在分段解码中不会带来性能提升。本文首先提出了一种有效的联合解码方案,称为BCH-CRC辅助分段SCL解码(BC-SCL)。还给出了其HARQ精制版本。 BCH和CRC用于不同的段,以最大化其自身的校正或校验优势。二进制输入加性高斯白噪声(BI-AWGN)信道上的数值结果表明了所提出的BC-SCL解码器的性能增益。还提出了相应的硬件架构。 (N = 128,K = 64,L = 2)的短长度BC-SCL解码器是通过Altera Stratix V FPGA实现的。与CRC辅助解码器相比,建议的解码器仅需要76.12%的ALM,并且延迟会略有增加。因此,BC-SCL方案可以在极性分段解码中高度展示BCH和CRC的优势。

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