DocumentCode :
1399451
Title :
Channel Modeling and Signal Processing for Probe Storage Channels
Author :
Pozidis, Haralampos ; Cherubini, Giovanni ; Pantazi, Angeliki ; Sebastian, Abu ; Eleftheriou, Evangelos
Author_Institution :
IBM Res. Zurich, Ruschlikon, Switzerland
Volume :
28
Issue :
2
fYear :
2010
fDate :
2/1/2010 12:00:00 AM
Firstpage :
143
Lastpage :
157
Abstract :
Probe-storage devices employ large arrays of probes to write/read data in parallel in some storage medium, and combine ultra-high density, low access times, and low power consumption. A particular probe-storage technique utilizes thermomechanical means to store and retrieve information in thin polymer films. In this paper, a system-level channel model for the thermomechanical probe-storage channel is presented. Each of the components of the proposed model is derived by extensive characterization of experimentally obtained readback signals from probe recording tests. Moreover, detection techniques that are actually utilized in a probe-storage prototype implementation are described, followed by coding techniques for added reliability in the presence of particles or other impurities of the storage medium. In addition to low-complexity coding constructs, a concatenated coding scheme with an outer LDPC and inner modulation code is considered, in order to establish a benchmark for overall system performance. A novel methodology for joint decoding of outer LDPC and inner (d,k) modulation codes is developed. Furthermore, an optimal soft decoder for the modulation code is proposed, based on a modification of the decoder metrics to accurately account for the probe storage channel output statistics. Experimental results are used throughout the paper to validate the channel model and identify its relevant parameters, as well as to verify the system performance obtained by simulations.
Keywords :
concatenated codes; decoding; digital storage; modulation coding; parity check codes; signal processing; LDPC; channel modeling; concatenated coding; forward-backward algorithm; joint decoding; low complexity coding; modulation code; parity check codes; signal processing; soft-decision decoding; storage media; thermomechanical probe storage channel; Array signal processing; Decoding; Energy consumption; Modulation coding; Parity check codes; Power system modeling; Probes; Signal processing; System performance; Thermomechanical processes; Channel modeling, probe storage, intersymbol interference, jitter, electronics noise, medium noise, noise shaping, run-length-limited (RLL) codes, low-density parity check (LDPC) codes, concatenated coding, soft-decision decoding, forward-backward algorithm.;
fLanguage :
English
Journal_Title :
Selected Areas in Communications, IEEE Journal on
Publisher :
ieee
ISSN :
0733-8716
Type :
jour
DOI :
10.1109/JSAC.2010.100203
Filename :
5402481
Link To Document :
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