Since irregular low-density parity-check (LDPC) codes are known to perform better than regular ones, and to exhibit, like them, the so-called \u2018threshold phenomenon\u2019, this Letter investigates a low-complexity upper bound on belief-propagation decoding thresholds for this class of codes on memoryless binary input additive white Gaussian noise channels, with sum-product decoding. A simplified analysis of the belief-propagation decoding algorithm is used, i.e. consider a Gaussian approximation for message densities under density evolution, and a simple algorithmic method, defined recently, to estimate the decoding thresholds for regular and irregular LDPC codes
Abstract—This short paper explores density evolution (DE) for low-density parity-check (LDPC) codes ...
Abstract—We propose an augmented belief propagation (BP) decoder for low-density parity check (LDPC)...
A modified belief-propagation algorithm is proposed for decoding of irregular low-density parity-che...
5noThis paper investigates about the usefulness of some recently published low complexity upper boun...
This letter presents a more accurate mathematical analysis, with respect to the one performed in Chu...
5noThis paper investigates about the usefulness of a recently published low complexity upper bound o...
In contemporary digital communications design, two major challenges should be addressed: adaptabilit...
4noIn contemporary digital communications design, two major challenges should be addressed: adaptabi...
In this paper, we investigate the performance of the belief propagation (BP) algorithm for decoding ...
In contemporary digital communications design, two major challenges should be addressed: adaptabilit...
In this paper, we provide an efficient way to predict iterative belief propagation (BP) decoding thr...
The equivalence of peeling decoding (PD) and Belief Propagation (BP) for low-density parity-check (L...
The equivalence of peeling decoding (PD) and Belief Propagation (BP) for low-density parity-check (L...
The equivalence of peeling decoding (PD) and Belief Propagation (BP) for low-density parity-check (L...
The equivalence of peeling decoding (PD) and Belief Propagation (BP) for low-density parity-check (L...
Abstract—This short paper explores density evolution (DE) for low-density parity-check (LDPC) codes ...
Abstract—We propose an augmented belief propagation (BP) decoder for low-density parity check (LDPC)...
A modified belief-propagation algorithm is proposed for decoding of irregular low-density parity-che...
5noThis paper investigates about the usefulness of some recently published low complexity upper boun...
This letter presents a more accurate mathematical analysis, with respect to the one performed in Chu...
5noThis paper investigates about the usefulness of a recently published low complexity upper bound o...
In contemporary digital communications design, two major challenges should be addressed: adaptabilit...
4noIn contemporary digital communications design, two major challenges should be addressed: adaptabi...
In this paper, we investigate the performance of the belief propagation (BP) algorithm for decoding ...
In contemporary digital communications design, two major challenges should be addressed: adaptabilit...
In this paper, we provide an efficient way to predict iterative belief propagation (BP) decoding thr...
The equivalence of peeling decoding (PD) and Belief Propagation (BP) for low-density parity-check (L...
The equivalence of peeling decoding (PD) and Belief Propagation (BP) for low-density parity-check (L...
The equivalence of peeling decoding (PD) and Belief Propagation (BP) for low-density parity-check (L...
The equivalence of peeling decoding (PD) and Belief Propagation (BP) for low-density parity-check (L...
Abstract—This short paper explores density evolution (DE) for low-density parity-check (LDPC) codes ...
Abstract—We propose an augmented belief propagation (BP) decoder for low-density parity check (LDPC)...
A modified belief-propagation algorithm is proposed for decoding of irregular low-density parity-che...