Title :
Noise Correlation-Aided Iterative Decoding for Magnetic Recording Channels
Author :
Vanichchanunt, Pisit ; Woradit, Kampol ; Nakpeerayuth, Suvit ; Wuttisittikulkij, Lunchakorn ; Hanzo, Lajos
Author_Institution :
Dept. of Electr. Eng., Chulalongkorn Univ., Bangkok
fDate :
Oct. 18 2006-Sept. 20 2006
Abstract :
In this paper, three noise correlation-aided iterative decoding schemes are proposed for magnetic recording channels, where the correlation is imposed by the equalizer´s spectral shaping effect. The first approach exploits the noise´ correlation in the form of linear prediction-aided detection by increasing the number of detector trellis states invoked by the Bahl, Cocke, Jelinek, and Raviv (BCJR) detection algorithm. In the second approach, we have extended the first technique by employing both previous and future correlated noise samples in order to attain noise estimates. In order to achieve this objective, the classic BCJR algorithm has to be modified for the sake of additionally exploiting future noise samples. The third approach is designed for reducing the decoding complexity by applying the Viterbi algorithm (VA) to assist the detector in finding the encoded sequences associated with the survivor paths in the detector´s trellis, without increasing the number of trellis states. We will demonstrate that for the classic PR4-equalized Lorentzian channel, the proposed schemes are capable of offering a performance gain in the range of 1.1-3.7 dB over that of a benchmark turbo decoding system at the BER of 10-5 and at a recording density of 2.86
Keywords :
Viterbi decoding; channel coding; correlation methods; iterative decoding; magnetic recording noise; sequential codes; trellis codes; Bahl Cocke Jelinek and Raviv detection algorithm; PR4-equalized Lorentzian channel; Viterbi algorithm; decoding complexity; encoded sequences; iterative decoding; linear prediction-aided detection; magnetic recording channels; noise correlation; noise samples; spectral shaping effect; Algorithm design and analysis; Detection algorithms; Detectors; Equalizers; Iterative decoding; Magnetic noise; Magnetic recording; Noise shaping; Performance gain; Viterbi algorithm; magnetic recording; noise prediction; turbo codes;
Conference_Titel :
Communications and Information Technologies, 2006. ISCIT '06. International Symposium on
Conference_Location :
Bangkok
Print_ISBN :
0-7803-9741-X
Electronic_ISBN :
0-7803-9741-X
DOI :
10.1109/ISCIT.2006.339862