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Bit-Permuted Coded Modulation for Polar Codes

机译:极性码的按位排列的编码调制

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摘要

We consider the problem of using polar codes with higher order modulation over AWGN channels. Unlike prior work, we focus on using modulation independent polar codes. That is, the polar codes are not re-designed based on the modulation used. Instead, we propose bit-permuted coded modulation (BPCM): a technique for using the multilevel coding (MLC) approach for an arbitrary polar code. The BPCM technique exploits a natural connection between MLC and polar codes. It involves applying bit permutations prior to mapping the polar code to a higher order modulation. The bit permutations are designed, via density evolution, to match the rates provided by various bit levels of the higher order modulation to that of the polar code. We demonstrate performance of the BPCM technique using link simulations and density evolution for the AWGN channel. We compare the BPCM technique with the bit-interleaved coded modulation (BICM) technique. When using polar codes designed for BPSK modulation, we show gains for BPCM over BICM with random interleaver of up to 0.2 dB, 0.7 dB and 1.4 dB for 4-ASK, 8-ASK, and 16-ASK respectively.
机译:我们考虑在AWGN信道上使用极性编码和更高阶调制的问题。与先前的工作不同,我们专注于使用独立于调制的极地码。即,不基于使用的调制来重新设计极性码。相反,我们提出了比特置换编码调制(BPCM):一种对任意极性码使用多级编码(MLC)方法的技术。 BPCM技术利用了MLC和极性码之间的自然联系。它涉及在将极性码映射到更高阶调制之前应用位置换。通过密度演化设计比特排列,以使高阶调制的各个比特级别所提供的速率与极性码的速率相匹配。我们使用AWGN通道的链路仿真和密度演变论证了BPCM技术的性能。我们将BPCM技术与位交错编码调制(BICM)技术进行了比较。当使用为BPSK调制设计的极性码时,我们显示了BICM上BPCM的增益,其中4ASK,8ASK和16ASK的随机交织器分别高达0.2 dB,0.7 dB和1.4 dB。

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