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Recursive convolutional codes for time-invariant LDPC convolutional codes

机译:时变LDPC卷积码的递归卷积码

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In this paper we present an attractive alternative to construct time-invariant Low-Density Parity-Check Convolutional Codes (LDPC-CC) of coding rate-b/c from a simple recursive systematic convolutional encoder design. The proposed Recursive Convolutional Doubly-Orthogonal (RCDO) encoders have a corresponding Tanner graph for which the girth is controlled by the doubly-orthogonal conditions that are imposed onto the set of generators that represent the encoder. Therefore, RCDO encoders can be decoded using simply a cascade of the same threshold decoder. The convergence behavior of the iterative decoder is then controlled by the position and by the number of forward and feedback connections that constitute the encoder. RCDO encoders give rise to a class of capacity approaching codes that use simple encoder and decoder structures.
机译:在本文中,我们提出了一种有吸引力的替代方案,该方案可通过简单的递归系统卷积编码器设计来构造编码率b / c的时不变低密度奇偶校验卷积码(LDPC-CC)。所提出的递归卷积双正交(RCDO)编码器具有相应的Tanner图,其周长由施加于代表编码器的一组生成器上的双正交条件控制。因此,可以仅使用同一阈值解码器的级联来解码RCDO编码器。迭代解码器的收敛行为然后由位置以及构成编码器的前向和反馈连接的数量控制。 RCDO编码器产生了使用简单编码器和解码器结构的一类容量逼近码。

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