Title :
On the Benefits of Pre-Equalization for ACO-OFDM and Flip-OFDM Indoor Wireless Optical Transmissions Over Dispersive Channels
Author :
Saengudomlert, Poompat
Author_Institution :
BU-CROCCS, Bangkok Univ., Bangkok, Thailand
Abstract :
This paper analyzes the performances of indoor optical wireless data transmissions based on unipolar orthogonal frequency division multiplexing (OFDM). In particular, it is shown that using frequency-domain pre-equalization can provide benefits in terms of the reduction in the required optical transmit power for a given desired bit error rate (BER) from uncoded transmissions. Known for its power efficiency, asymmetrically clipped optical OFDM (ACO-OFDM) is considered as a unipolar modulation scheme for intensity modulation with direct detection (IM/DD). In addition, flip-OFDM is also considered as an alternative unipolar modulation scheme which is known to be as power efficient as ACO-OFDM. For both ACO-OFDM and flip-OFDM, analytical and simulation results show that using pre-equalization can save up to 2 dB of transmit optical power for a typical indoor optical wireless transmission scenario with the bit rate of 10 Mbps and the BER target of 10-5.
Keywords :
OFDM modulation; error statistics; frequency-domain analysis; indoor radio; optical communication; wireless channels; ACO-OFDM; BER; asymmetrically clipped optical OFDM; bit error rate; bit rate 10 Mbit/s; direct detection; dispersive channels; flip-OFDM indoor wireless optical transmissions; frequency-domain pre-equalization; indoor optical wireless data transmissions; indoor optical wireless transmission scenario; intensity modulation; optical transmit power reduction; power efficiency; unipolar modulation scheme; unipolar orthogonal frequency division multiplexing; Adaptive optics; Bit error rate; OFDM; Optical receivers; Optical transmitters; Quadrature amplitude modulation; Asymmetrically clipped optical (ACO)-orthogo-nal frequency division multiplexing (OFDM); OFDM; flip-OFDM; optical wireless communications (OWC); post-equalization; pre-equalization;
Journal_Title :
Lightwave Technology, Journal of
DOI :
10.1109/JLT.2013.2286746