Decoding Scheduling for Unequal Error Protection Quasi-Cyclic Low-Density Parity-Check Codes

Jia-jyun Wu, Chung-hsuan Wang, Chi-chao Chao
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引用次数: 1

Abstract

Algebraic constructions of quasi-cyclic (QC) low-density parity-check (LDPC) codes with unequal error protection (UEP) capabilities have recently been proposed, which can provide different error-correcting capabilities for different parts of the coded bits. However, conventional decoding algorithms are not designed for LDPC codes with UEP. In this paper, we propose three decoding schemes for UEP QC-LDPC codes extended from existing scheduling strategies, tailored to the special structures of the parity-check matrices. Simulation results show that the proposed schemes can provide improved error rate performance especially for coded bits on low protection levels. The decoding convergence can also be accelerated, thereby reducing the computational complexity.
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非等错保护准循环低密度奇偶校验码的译码调度
最近提出了具有不等错保护(UEP)能力的准循环(QC)低密度奇偶校验(LDPC)码的代数结构,它可以为编码位的不同部分提供不同的纠错能力。然而,传统的解码算法并不是为具有UEP的LDPC码设计的。本文在现有调度策略的基础上,针对校验矩阵的特殊结构,提出了UEP QC-LDPC码的三种译码方案。仿真结果表明,该方案可以提高误码率,特别是对于低保护级别的编码比特。还可以加快解码收敛速度,从而降低计算复杂度。
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Optimization Method for Designing Sequences With Low Partial-period Autocorrelation Sidelobes Decoding Scheduling for Unequal Error Protection Quasi-Cyclic Low-Density Parity-Check Codes 4q-QAM Complementary Sequence Sets with Non-Power-of-Two Length* Properties of Knuth’s Quadratic Congruential Sequences with Modulus m = 2W p New Constructions of Binary (Near) Complementary Sets
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