International audienceClassically, the quantization of the soft information supplied to a finite-precision decoder is chosen to optimize a certain criterion which does not depend on the characteristics of the existing code. This work studies code-aware quantizers, for finite-precision min-sum decoders, which optimize the noise threshold of the existing family of Low-Density Parity-Check (LDPC) codes. We propose a code-aware quantizer with lower complexity than that obtained by optimizing all decision levels and approaching its performance, for few quantization bits. We show that code-aware quantizers outperform code-independent quantizers in terms of noise threshold for both regular and irregular LDPC codes. To overcome the error floor beha...
In this paper, we propose a finite alphabet iterative decoder (FAID) named rate-compatible mutual-in...
Includes bibliographical references (pages 174-185).This dissertation presents two-bit and three-bit...
Abstract ― Low Density Parity Check (LDPC) code approaches Shannon–limit performance for binary fiel...
International audienceClassically, the quantization of the soft information supplied to a finite-pre...
The effects of clipping and quantization on the performance of the min-sum algorithm for the decodin...
International audienceThis paper proposes a new finite precision iterative decoder for low-density p...
This paper is concerned with the implementation issues of the so-called min-sum algorithm (also refe...
Abstract—The effects of clipping and quantization on the per-formance of the min-sum algorithm for t...
Abstract—The quantization of the output of a binary-input discrete memoryless channel to a smaller n...
Abstract—We analyze the performance of quantized min-sum decoding of low-density parity-check codes ...
ITC/USA 2010 Conference Proceedings / The Forty-Sixth Annual International Telemetering Conference a...
Low-density parity-check codes are commonly decoded using iterative message-passing decoders, such a...
We analyze the performance of quantized min-sum decoding of low-density parity-check codes under unr...
Abstract—In this paper, we present adaptive quantization schemes in the normalized min-sum decoding ...
In this thesis, two improved decoders are defined using quantized input channel with only 3 or 4 bit...
In this paper, we propose a finite alphabet iterative decoder (FAID) named rate-compatible mutual-in...
Includes bibliographical references (pages 174-185).This dissertation presents two-bit and three-bit...
Abstract ― Low Density Parity Check (LDPC) code approaches Shannon–limit performance for binary fiel...
International audienceClassically, the quantization of the soft information supplied to a finite-pre...
The effects of clipping and quantization on the performance of the min-sum algorithm for the decodin...
International audienceThis paper proposes a new finite precision iterative decoder for low-density p...
This paper is concerned with the implementation issues of the so-called min-sum algorithm (also refe...
Abstract—The effects of clipping and quantization on the per-formance of the min-sum algorithm for t...
Abstract—The quantization of the output of a binary-input discrete memoryless channel to a smaller n...
Abstract—We analyze the performance of quantized min-sum decoding of low-density parity-check codes ...
ITC/USA 2010 Conference Proceedings / The Forty-Sixth Annual International Telemetering Conference a...
Low-density parity-check codes are commonly decoded using iterative message-passing decoders, such a...
We analyze the performance of quantized min-sum decoding of low-density parity-check codes under unr...
Abstract—In this paper, we present adaptive quantization schemes in the normalized min-sum decoding ...
In this thesis, two improved decoders are defined using quantized input channel with only 3 or 4 bit...
In this paper, we propose a finite alphabet iterative decoder (FAID) named rate-compatible mutual-in...
Includes bibliographical references (pages 174-185).This dissertation presents two-bit and three-bit...
Abstract ― Low Density Parity Check (LDPC) code approaches Shannon–limit performance for binary fiel...