Title :
Electro-Optical Generation and Distribution of Ultrawideband Signals Based on the Gain Switching Technique
Author :
Shams, Haymen ; Kaszubowska-Anandarajah, Aleksandra ; Perry, Philip ; Anandarajah, P. ; Barry, Liam P.
Author_Institution :
Dept. of Electron. Eng., Dublin City Univ., Dublin, Ireland
fDate :
3/1/2010 12:00:00 AM
Abstract :
We demonstrate and compare the generation and distribution of pulse position modulation (PPM) ultrawideband (UWB) signals, based on two different techniques using a gain-switched laser (GSL). One uses a GSL followed by two external modulators, while the second technique employs two laser diodes gain switched (GS) using a combined signal from a pattern generator and an RF signal generator. Bit-error-rate (BER) measurements and eye diagrams for UWB signals have been measured experimentally by using the different GS transmitter configurations and various fiber transmission distances. The simulation of both systems also has been carried out to verify our obtained results, which show the suitability of employing gain switching in a UWB over fiber (UWBoF) system to develop a reliable, simple, and low-cost technique for distributing the impulse-radio UWB (IR-UWB) pulses to the receiver destination.
Keywords :
electro-optical devices; electro-optical effects; error statistics; optical fibre communication; pattern formation; pulse position modulation; radio-over-fibre; signal generators; ultra wideband communication; GS transmitter configurations; RF signal generator; UWB over fiber system; bit-error-rate measurements; electro-optical distribution; electro-optical generation; eye diagrams; gain switching technique; gain-switched laser; impulse-radio UWB pulses; pattern generator; pulse position modulation; receiver destination; ultrawideband signals; Band pass filters; Costs; Optical filters; Optical modulation; Optical pulse generation; Optical pulses; Optical transmitters; Pulse modulation; Signal generators; Ultra wideband technology; Fiber optics communications; Radio frequency photonics;
Journal_Title :
Optical Communications and Networking, IEEE/OSA Journal of
DOI :
10.1364/JOCN.2.000122