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Performance and Implementation of Enhanced Multi CRC-LSC Polar Codes

机译:增强型多重CRC-LSC极性码的性能和实现

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By adopting cyclic redundancy check (CRC), the block error rate (BLER) of polar code which were recently chosen to protect the channel information can be highly improved. In this paper, we pay more attention to the structure of CRC to improve the performance of finite length polar code. An enhanced multi CRC- list successive cancellation (LSC) decoding scheme by segmenting information vector using different generator polynomials is proposed. Simulation results show that the BLER performance of enhanced multi CRC-LSC polar codes over additive white Gaussian noise (AWGN) channel significantly outperforms the multi CRC-LSC ones with no increase in complexity. The results offer a useful direction for the future of wireless communications.
机译:通过采用循环冗余校验(CRC),可以极大地提高最近被选择用来保护信道信息的极性码的块错误率(BLER)。在本文中,我们更加关注CRC的结构,以提高有限长度极性码的性能。提出了一种通过使用不同的生成多项式对信息向量进行分割的增强型多CRC列表连续消除(LSC)解码方案。仿真结果表明,增强的多CRC-LSC极性码在加性高斯白噪声(AWGN)信道上的BLER性能明显优于多CRC-LSC的,但其复杂度没有增加。结果为无线通信的未来提供了有用的方向。

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