DocumentCode
46373
Title
Multi-band carrier-less amplitude and phase modulation for bandlimited visible light communications systems
Author
Haigh, Paul Anthony ; Son Thai Le ; Zvanovec, Stanislav ; Ghassemlooy, Zabih ; Pengfei Luo ; Tongyang Xu ; Chvojka, Petr ; Kanesan, Thavamaran ; Giacoumidis, Elias ; Canyelles-Pericas, Pep ; Hoa Le Minh ; Popoola, Wasiu ; Rajbhandari, Sujan ; Papakonstant
Volume
22
Issue
2
fYear
2015
fDate
Apr-15
Firstpage
46
Lastpage
53
Abstract
Visible light communications is a technology with enormous potential for a wide range of applications within next generation transmission and broadcasting technologies. VLC offers simultaneous illumination and data communications by intensity modulating the optical power emitted by LEDs operating in the visible range of the electromagnetic spectrum (~370-780 nm). The major challenge in VLC systems to date has been in improving transmission speeds, considering the low bandwidths available with commercial LED devices. Thus, to improve the spectral usage, the research community has increasingly turned to advanced modulation formats such as orthogonal frequency-division multiplexing. In this article we introduce a new modulation scheme into the VLC domain; multiband carrier-less amplitude and phase modulation (m-CAP) and describe in detail its performance within the context of bandlimited systems.
Keywords
OFDM modulation; amplitude modulation; data communication; light emitting diodes; optical communication; optical modulation; phase modulation; LED devices; VLC domain; VLC systems; bandlimited systems; broadcasting technologies; data communications; electromagnetic spectrum; m-CAP; modulation formats; modulation scheme; multiband carrierless amplitude modulation; next generation transmission technologies; optical power; orthogonal frequency-division multiplexing; phase modulation; spectral usage; transmission speeds; visible light communications systems; Bandwidth; Bit error rate; Finite impulse response filters; Fluorescence; Light emitting diodes; Lighting; Modulation; OFDM; Optical devices; Receivers;
fLanguage
English
Journal_Title
Wireless Communications, IEEE
Publisher
ieee
ISSN
1536-1284
Type
jour
DOI
10.1109/MWC.2015.7096284
Filename
7096284
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