Block length of LDPC codes in fading channels

Author(s):  
Wei Wu ◽  
Sangjin Hong ◽  
Do-Sik Yoo
2021 ◽  
Vol 1738 ◽  
pp. 012037
Author(s):  
Hui Zhou ◽  
Rui Wang ◽  
Hairu Zhao ◽  
Zhenzhou An

2007 ◽  
Vol 55 (1) ◽  
pp. 122-132 ◽  
Author(s):  
Christopher R. Jones ◽  
Tao Tian ◽  
John Villasenor ◽  
Richard D. Wesel
Keyword(s):  

2019 ◽  
Vol 2019 ◽  
pp. 1-12 ◽  
Author(s):  
Muhammad Asif ◽  
Wuyang Zhou ◽  
Qingping Yu ◽  
Xingwang Li ◽  
Nauman Ali Khan

This correspondence presents a jointly designed quasicyclic (QC) low-density parity-check (LDPC) coded-relay cooperation with joint-iterative decoding in the destination node. Firstly, a design-theoretic construction of QC-LDPC codes based on a combinatoric design approach known as optical orthogonal codes (OOC) is presented. Proposed OOC-based construction gives three classes of binary QC-LDPC codes with no length-4 cycles by utilizing some known ingredients including binary matrix dispersion of elements of finite field, incidence matrices, and circulant decomposition. Secondly, the proposed OOC-based construction gives an effective method to jointly design length-4 cycles free QC-LDPC codes for coded-relay cooperation, where sum-product algorithm- (SPA-) based joint-iterative decoding is used to decode the corrupted sequences coming from the source or relay nodes in different time frames over constituent Rayleigh fading channels. Based on the theoretical analysis and simulation results, proposed QC-LDPC coded-relay cooperations outperform their competitors under same conditions over the Rayleigh fading channel with additive white Gaussian noise.


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