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Interleaved Concatenations of Polar Codes With BCH and Convolutional Codes

机译:极码与BCH和卷积码的交错级联

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摘要

We analyze interleaved concatenation schemes of polar codes with outer binary BCH codes and convolutional codes. We show that both BCH-polar and Conv-polar codes can have a frame error rate that decays exponentially with the code length for all rates up to capacity, which is a substantial improvement in the error exponent over stand-alone polar codes. Interleaved concatenation with long constraint length convolutional codes is an effective way to leverage the fact that polarization increases the cutoff rate of the channel. Simulation results show that Conv-polar codes when decoded with the proposed soft-output multistage iterative decoding algorithm can outperform stand-alone polar codes decoded with successive cancellation or belief propagation decoding. It may be comparable to stand-alone polar codes with list decoding in the high SNR regime. In addition to this, we show that the proposed concatenation scheme requires lower memory and decoding complexity in comparison to belief propagation and list decoding of polar codes. Practically, the scheme enables rate compatible outer codes which ease hardware implementation. Our results suggest that the proposed method may strike a better balance between performance and complexity compared to existing methods in the finite-length regime.
机译:我们分析了极性码与外部二进制BCH码和卷积码的交错级联方案。我们表明,BCH极性和Conv极性代码都可以具有帧错误率,该错误率对于所有速率直至容量都随着代码长度的增加而呈指数下降,这比独立极性代码的错误指数有了实质性的提高。具有长约束长度卷积码的交错级联是一种有效的方式,可以利用极化增加信道截止速率的事实。仿真结果表明,使用所提出的软输出多级迭代解码算法解码的Conv极性码的性能优于通过连续抵消或置信度传播解码的独立极性码。在高SNR方案中,它可以与带有列表解码的独立极性码相媲美。除此之外,我们表明,与置信传播和极性码的列表解码相比,提出的级联方案所需的存储空间和解码复杂度更低。实际上,该方案启用速率兼容的外部代码,从而简化了硬件实现。我们的结果表明,与有限长度方案中的现有方法相比,该方法可能在性能和复杂性之间取得更好的平衡。

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