Title :
Adaptive Modulation Schemes for Visible Light Communications
Author :
Liang Wu ; Zaichen Zhang ; Jian Dang ; Huaping Liu
Author_Institution :
Nat. Mobile Commun. Res. Lab., Southeast Univ., Nanjing, China
Abstract :
A major limitation of existing visible light communication (VLC) systems is the limited modulation bandwidth of light-emitting diodes used in such systems. Using adaptive modulation to improve the spectral efficiency for radio communications has been well studied. For VLC with various physical layer schemes, however, how adaptive modulation works is not well understood yet. The goal of this paper is to provide an in-depth analysis of the achievable spectral efficiency of adaptive modulation for three different schemes for high speed VLC: dc-biased optical orthogonal frequency division multiplexing (DCO-OFDM), asymmetrically clipped optical OFDM (ACO-OFDM), and single-carrier frequency-domain equalization (SC-FDE). We will show that in the low signal-to-noise ratio region, the ACO-OFDM-based adaptive modulation scheme outperforms the other two schemes. SC-FDE-based adaptive modulation achieves a better performance than the DCO-OFDM-based scheme, and it is much simpler than the other two schemes.
Keywords :
OFDM modulation; adaptive modulation; frequency-domain analysis; light emitting diodes; optical communication; optical limiters; optical modulation; radiocommunication; visible spectra; ACO-OFDM; DC-biased optical OFDM; DCO-orthogonal frequency division multiplexing; SC-FDE; adaptive modulation limited bandwidth; asymmetrically clipped optical OFDM; high speed VLC system; light emitting diode; low signal-to-noise ratio; physical layer scheme; radio communication; single carrier frequency-domain equalization; spectral efficiency; visible light communication; OFDM; Optical modulation; Optical receivers; Optical transmitters; Signal to noise ratio; Adaptive modulation; Visible light communication (VLC); adaptive modulation; orthogonal frequency division multiplexing (OFDM); single-carrier frequency-domain equalization (SC-FDE); visible light communication (VLC);
Journal_Title :
Lightwave Technology, Journal of
DOI :
10.1109/JLT.2014.2374171