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Min-Sum Algorithm Using Multi-Edge-Type Normalized Scheme for ATSC 3.0 LDPC Decoders

机译:用于ATSC 3.0 LDPC解码器的多边型归一化方案的最小和算法

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To offer commercial LDPC decoders with better performance, in this paper, multi-edge-type (MET) normalized scheme is proposed to improve the performance of traditional min-sum algorithm (MSA) and its modified versions. With respect to sum-product algorithm (SPA), we firstly analyze and find out that the degradations of convergence in different edge types are distinct in MSA theoretically. To compensate the different degradations above, proposed MET-normalized scheme is used in normalized min-sum algorithm (MET-NMSA). In addition, MET-based density evolution (MET-DE) is also presented to search optimized MET-scaling factors for MET-NMSA. To further verify the validity of MET-normalized scheme, Advanced Television Systems Committee (ATSC) 3.0 LDPC codes are used to evaluate MET-NMSA in comparison with the conventional algorithms, i.e., normalized min-sum algorithm (NMSA), offset min-sum algorithm (OMSA) and variable-scaling normalized min-sum algorithm (VS-NMSA). Extensive simulation results show that MET-NMSA for ATSC 3.0 LDPC decoders has at most 1.53dB, 0.21dB and 0.35dB gain over NMSA, OMSA and VS-NMSA respectively when frame error rate (FER) is at 10(-4) level over additive white Gaussian noise (AWGN) channels using QPSK modulation.
机译:为提供具有更好性能的商业LDPC解码器,本文提出了多边型(MET)规范化方案,提高了传统最小和算法(MSA)及其修改版本的性能。关于Sum-Product算法(SPA),我们首先分析并找出不同边缘类型的收敛性的降解在理论上在MSA中不同。为了补偿上述不同的降级,所提出的MET标准化方案用于归一化最小和算法(Met-NMSA)。此外,还提出了基于MET的密度进化(MET-de)以搜索MET-NMSA的优化ETL-SCALING因子。为了进一步验证符合符合规范化方案的有效性,高级电视系统委员会(ATSC)3.0 LDPC代码用于评估MET-NMS,与传统算法相比,即归一化最小和算法(NMSA),偏移最小和算法(OMSA)和可变缩放归一化最小和算法(VS-NMSA)。广泛的仿真结果表明,当帧错误率(FER)为10(-4)水平时,ATSC 3.0 LDPC解码器的MET-NMSA分别最多为1.53dB,0.21dB和0.35dB的NMSA,OMSA和VS-NMSA。添加剂白色高斯噪声(AWGN)频道使用QPSK调制。

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