Title :
Error Rate Estimation of Low-Density Parity-Check Codes Decoded by Quantized Soft-Decision Iterative Algorithms
Author :
Hua Xiao ; Banihashemi, Amir H. ; Karimi, Maryam
Author_Institution :
Adv. Micro Devices (AMD), Toronto, ON, Canada
Abstract :
This paper describes a combinatorial approach to estimate the error rate performance of low-density parity-check (LDPC) codes decoded by (quantized) soft-decision iterative decoding algorithms. The method is based on efficient enumeration of input vectors with small distances to a reference vector whose elements are selected to be the most reliable values from the input alphabet. Several techniques, including modified cycle enumeration, and the efficient derivation of problematic inputs for finer quantizers from those of coarser ones are employed to reduce the complexity of the enumeration. The error rate estimate is derived by testing the input vectors of small distances followed by estimating the contribution of larger distance vectors. We demonstrate by a number of examples that the proposed method provides accurate estimates of error rate with computational complexity much lower than that of Monte Carlo simulations, especially at the error floor region.
Keywords :
communication complexity; iterative decoding; parity check codes; quantisation (signal); vectors; LDPC decoding; combinatorial approach; computational complexity; error rate estimation; error rate performance estimation; input vector enumeration; low-density parity-check code decoding; modified cycle enumeration; quantized soft-decision iterative algorithm; quantized soft-decision iterative decoding algorithm; reference vector; Decoding; Error analysis; Estimation; Iterative decoding; Signal to noise ratio; Vectors; Low-density parity-check (LDPC) codes; error floor; error rate estimation; finite-length LDPC codes; iterative decoding; quantization; soft-decision decoding algorithms;
Journal_Title :
Communications, IEEE Transactions on
DOI :
10.1109/TCOMM.2012.122112.110805