DocumentCode
1001073
Title
Performance Evaluation of a Novel Converged Architecture for Digital-Video Transmission Over Optical Wireless Channels
Author
Cvijetic, Neda ; Wilson, Stephen G. ; Zarubica, Radivoje
Author_Institution
Univ. of Virginia, Charlottesville
Volume
25
Issue
11
fYear
2007
Firstpage
3366
Lastpage
3373
Abstract
A robust channel coding architecture for multigigabit-per-second digital-video transmission over the optical wireless channel is introduced and evaluated. The proposed scheme combines low-density parity-check coding with channel interleaving to improve the transmission over turbulent temporally correlated optical wireless channels while satisfying real-time video delay constraints. Frame error rates of the presented code design are evaluated via simulation for intensity-modulation/direct-detection optical wireless links in both lognormal- and Rayleigh-fading channels. Results indicate that the performance of the proposed system is effective across a large range of atmospheric turbulence strengths and achieves significant temporal diversity in moderately long (10 ms) temporal correlation times while satisfying a 0.3-s real-time delay constraint. Moreover, the proposed design is shown to outperform the Reed-Solomon codes prevalent in the legacy fiber and wireless digital-television distribution systems.
Keywords
Rayleigh channels; Reed-Solomon codes; channel coding; digital video broadcasting; parity check codes; performance evaluation; wireless channels; Rayleigh fading channels; Reed-Solomon codes; channel coding; channel interleaving; digital video transmission; lognormal fading channels; low-density parity-check coding; optical wireless channels; performance evaluation; real-time video delay constraints; Atmospheric modeling; Channel coding; Delay; Error analysis; Interleaved codes; Optical design; Parity check codes; Rayleigh channels; Real time systems; Robustness; Atmospheric turbulence; convergence; digital-video transmission; low-density parity-check (LDPC) codes; optical wireless communication;
fLanguage
English
Journal_Title
Lightwave Technology, Journal of
Publisher
ieee
ISSN
0733-8724
Type
jour
DOI
10.1109/JLT.2007.909198
Filename
4397116
Link To Document