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High throughput and low complexity implementation of NB-LDPC decoder based on EMS algorithm

机译:基于EMS算法的NB-LDPC解码器的高吞吐量,低复杂度实现

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References(12) Non-Binary Low-Density-Parity-Check codes (NB-LDPC) have shown superior performance but its huge complexity and low throughput prevent it from practical applications. This paper presents a novel architecture to implement a kind of high-throughput low-complexity irregular quasi-cyclic NB-LDPC decoder over GF (16) based on Extended Min-Sum (EMS) Algorithm. Double clocks are adopted in this paper. The low frequency clock at 60 MHz serves as the system clock and the high frequency clock at 480 MHz works for check nodes and variable nodes thus they can be reused 8 times during one system clock period as a result the complexity can be largely reduced. Synthesis result shows that the throughput can achieve 68.57 Mbps at 5 iterations. FPGA testing result shows that the decoder has little performance degradation compared with its floating model and it can provide about 0.5 dB coding gain compared with its binary LDPC code of the same block length. The proposed architecture can be conveniently extended to higher Galois Filed such as GF (64) or GF (256) and it can be applied for different code length and rate by modifying a slight part of the decoder. Compared with previous works, the decoder proposed in this paper is more efficient for practical applications.
机译:参考文献(12)非二进制低密度奇偶校验码(NB-LDPC)已显示出卓越的性能,但其巨大的复杂性和低吞吐量使其无法在实际应用中使用。本文提出了一种基于扩展最小和(EMS)算法在GF(16)上实现一种高吞吐量,低复杂度的不规则准循环NB-LDPC解码器的新颖架构。本文采用双时钟。 60 MHz的低频时钟用作系统时钟,而480 MHz的高频时钟用于校验节点和可变节点,因此它们可以在一个系统时钟周期内重复使用8次,因此可以大大降低复杂度。综合结果表明,经过5次迭代,吞吐量可以达到68.57 Mbps。 FPGA测试结果表明,与浮动模型相比,解码器的性能几乎没有下降,并且与相同块长度的二进制LDPC码相比,解码器可提供约0.5 dB的编码增益。所提出的体系结构可以方便地扩展到更高的Galois Filed,例如GF(64)或GF(256),并且可以通过修改解码器的一小部分而应用于不同的代码长度和速率。与以前的工作相比,本文提出的解码器在实际应用中效率更高。

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