Title :
DFE Versus MLSE Electronic Equalization for Gigabit/s SI-POF Transmission Systems
Author :
Zeolla, Dario ; Antonino, Alessandro ; Bosco, Gabriella ; Gaudino, Roberto
Author_Institution :
Ist. Superiore Mario Boella, Torino, Italy
fDate :
4/15/2011 12:00:00 AM
Abstract :
In this letter, we compare three different types of electronic equalization techniques to compensate the limited bandwidth of gigabit/s step-index polymer optical fiber (SI-POF) transmission systems. In particular, we experimentally analyze the performance of a feed-forward equalizer (FFE), a feed-forward plus decision feedback equalizer (FFE+DFE), and a maximum likelihood sequence estimator (MLSE) equalizer in an optical link composed of a resonant cavity light-emitting diode (RC-LED), 50 m of SI-POF, and a photodiode. The investigation is carried out on a real hardware experiment based on available POF optoelectronics, while the equalization is implemented in software using an off-line processing approach. We show that the FFE+DFE solution pays only a limited penalty versus the much more complex MLSE algorithm. Our result shows that the FFE+DFE solution is a very good compromise between performance and complexity for a gigabit/s SI-POF system.
Keywords :
compensation; decision feedback equalisers; equalisers; feedforward; light emitting diodes; maximum likelihood sequence estimation; optical communication equipment; optical fibre communication; photodiodes; polymer fibres; DFE; FFE; FFE+DFE; MLSE; RC-LED; SI-POF transmission systems; distance 50 m; electronic equalization; feed-forward equalizer; feed-forward plus decision feedback equalizer; maximum likelihood sequence estimator; off-line processing approach; optical link; photodiode; resonant cavity light-emitting diode; step-index polymer optical fiber; Decision feedback equalizers; Maximum likelihood estimation; Optical fibers; Optical receivers; Optical transmitters; Decision feedback equalizer (DFE); electronic equalization; home networking; maximum likelihood sequence estimator (MLSE); polymer optical fiber (POF) transmission systems;
Journal_Title :
Photonics Technology Letters, IEEE
DOI :
10.1109/LPT.2011.2113316