We introduce a new paradigm for finite precision iterative decoding on low-density parity-check codes over the binary symmetric channel. The messages take values from a finite alphabet, and unlike traditional quantized decoders which are quantized versions of the belief propagation (BP) decoder, the proposed finite alphabet iterative decoders (FAIDs) do not propagate quantized probabilities or log-likelihoods and the variable node update functions do not mimic the BP decoder. Rather, the update functions are maps designed using the knowledge of potentially harmful subgraphs that could be present in a given code, thereby rendering these decoders capable of outperforming the BP in the error floor region. On certain column-weight-three codes o...
Abstract—We propose an augmented belief propagation (BP) decoder for low-density parity check (LDPC)...
In this paper, we introduce a method of using quantized neural networks (QNN) to design finite alpha...
Abstract-In this paper, we analyze Finite Alphabet Iterative Decoders (FAIDs) running on faulty hard...
We introduce a new paradigm for finite precision iterative decoding on low-density parity-check code...
The recent renaissance of one particular class of error-correcting codes called low-density parity-c...
Recently, we introduced a new class of finite alphabet iterative decoders (FAIDs) for low-density pa...
Abstract—We introduce a generic approach for improving the guaranteed error correction capability of...
Recently, we introduced a new class of finite alphabet iterative decoders (FAIDs) for low-density pa...
Low-density parity-check (LDPC) codes are adopted in many applications due to their Shannon-limit ap...
Abstract—Finite alphabet iterative decoders (FAID) with mul-tilevel messages that can surpass BP in ...
Abstract—Finite alphabet iterative decoders (FAIDs) for LDPC codes were recently shown to be capable...
International audienceThis paper introduces a new theoretical framework, akin to the use of imprecis...
International audienceThis paper introduces a new theoretical framework, akin to the use of imprecis...
At the heart of modern coding theory lies the fact that low-density parity-check (LDPC) codes can be...
ITC/USA 2010 Conference Proceedings / The Forty-Sixth Annual International Telemetering Conference a...
Abstract—We propose an augmented belief propagation (BP) decoder for low-density parity check (LDPC)...
In this paper, we introduce a method of using quantized neural networks (QNN) to design finite alpha...
Abstract-In this paper, we analyze Finite Alphabet Iterative Decoders (FAIDs) running on faulty hard...
We introduce a new paradigm for finite precision iterative decoding on low-density parity-check code...
The recent renaissance of one particular class of error-correcting codes called low-density parity-c...
Recently, we introduced a new class of finite alphabet iterative decoders (FAIDs) for low-density pa...
Abstract—We introduce a generic approach for improving the guaranteed error correction capability of...
Recently, we introduced a new class of finite alphabet iterative decoders (FAIDs) for low-density pa...
Low-density parity-check (LDPC) codes are adopted in many applications due to their Shannon-limit ap...
Abstract—Finite alphabet iterative decoders (FAID) with mul-tilevel messages that can surpass BP in ...
Abstract—Finite alphabet iterative decoders (FAIDs) for LDPC codes were recently shown to be capable...
International audienceThis paper introduces a new theoretical framework, akin to the use of imprecis...
International audienceThis paper introduces a new theoretical framework, akin to the use of imprecis...
At the heart of modern coding theory lies the fact that low-density parity-check (LDPC) codes can be...
ITC/USA 2010 Conference Proceedings / The Forty-Sixth Annual International Telemetering Conference a...
Abstract—We propose an augmented belief propagation (BP) decoder for low-density parity check (LDPC)...
In this paper, we introduce a method of using quantized neural networks (QNN) to design finite alpha...
Abstract-In this paper, we analyze Finite Alphabet Iterative Decoders (FAIDs) running on faulty hard...