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Capacity-Achieving Rate-Compatible Polar Codes

机译:达到容量的速率兼容的极地代码

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A method of constructing rate-compatible polar codes that are capacity achieving at multiple code rates with low-complexity sequential decoders is presented. The underlying idea of the construction exploits certain common characteristics of polar codes that are optimized for a sequence of successively degraded channels. The proposed code consists of parallel concatenation of multiple polar codes with information-bit divider at the input of each polar encoder. Thus, it is referred to as parallel concatenated polar (PCP) codes. A lower-rate PCP code is simply constructed by adding more constituent polar codes, which enables incremental retransmissions at different rates in order to adapt to channel conditions. Due to the length limitation of polar codes, the PCP code can only support a restricted set of rates that is characterized by the size of the kernel when conventional polar codes are used. To overcome this limitation, punctured polar codes, which provide more flexibility on blocklength by controlling a puncturing fraction, are considered as constituent codes. The existence of capacity-achieving punctured polar codes for any given puncturing fraction is proven. Using such punctured polar codes as constituent codes, it is shown that the proposed PCP code is capacity achieving for an arbitrary sequence of rates and for any class of degraded channels.
机译:提出了一种构造速率兼容极性码的方法,该极性兼容码具有利用低复杂度顺序解码器以多种码率实现容量的能力。该结构的基本思想利用了极性码的某些共同特征,这些特征针对一系列连续降级的信道进行了优化。所提出的代码由多个极性代码与每个极性编码器输入处的信息位分频器的并行级联组成。因此,它被称为并行级联极性(PCP)码。较低速率的PCP代码可通过添加更多的构成极性代码来简单构造,从而能够以不同的速率进行增量重传,以适应信道条件。由于极性码的长度限制,当使用常规极性码时,PCP码只能支持一组受限的速率,其特征在于内核的大小。为了克服该限制,将通过控制删余分数而在块长度上提供更大灵活性的删余极性码视为组成码。证明了对于任何给定的删余分数都存在可实现容量的删余极性码。使用这种打孔的极性码作为组成码,表明所提出的PCP码对于任意速率序列和任何类型的降级信道都能实现容量。

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