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Construction of Irregular QC-LDPC Codes via Masking with ACE Optimization

机译:通过ACE优化掩盖构造不规则QC-LDPC码

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摘要

Quasi-cyclic low-density parity-check (QC-LDPC) codes constructed by using algebraic approaches, such as finite geometry and finite field, generally have good structural properties and very low error-floors, and facilitate hardware implementation. Irregular QC-LDPC codes constructed from such QC-LDPC codes by using the masking technique, when decoded with the sum-product algorithm (SPA), have low decoding complexity, but often show early error-floors. In this paper, the relationship of cycle, girth and approximate cycle EMD (ACE) between the masking matrix and masked matrix is investigated, and the ACE algorithm is modified and used to construct the masking matrix for irregular QC-LDPC codes. Simulations demonstrate that the codes constructed by masking with ACE optimization exhibit much improved waterfall performance and lower error floors.
机译:通过使用诸如有限几何和有限域之类的代数方法构造的准循环低密度奇偶校验(QC-LDPC)代码通常具有良好的结构特性和非常低的误码率,并便于硬件实现。当使用和积算法(SPA)进行解码时,使用掩蔽技术从此类QC-LDPC码构建的不规则QC-LDPC码具有较低的解码复杂度,但通常显示出早期的错误底限。研究了掩蔽矩阵与掩蔽矩阵之间的周期,周长和近似周期EMD(ACE)的关系,并对ACE算法进行了改进,并用于构造不规则QC-LDPC码的掩蔽矩阵。仿真表明,通过使用ACE优化进行掩码构建的代码显示出大大改善的瀑布性能和更低的错误下限。

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