Title :
Passive optical fast frequency-hop CDMA communications system
Author :
Fathallah, Habib ; Rusch, Leslie A. ; LaRochelle, Sophie
Author_Institution :
Dept. of Electr. Eng., Laval Univ., Que., Canada
fDate :
3/1/1999 12:00:00 AM
Abstract :
This paper proposes an all-fiber fast optical frequency-hop code division multiple access (FFH-CDMA) for high-bandwidth communications. The system does not require an optical frequency synthesizer allowing high communication bit rates. Encoding and decoding are passively achieved by Bragg gratings, Multiple Bragg gratings replace a frequency synthesizer, achieving a hopping rate in tens of GHz. A main lobe sine apodization can be used in writing the gratings to enhance the system capacity and the spectrum efficiency. All network users can use the same tunable encoder/decoder design. The simultaneous utilization of the time and frequency domains offers notable flexibility in code selection. Simulations show that the encoder efficiently performs the FFH spread spectrum signal generation and that the receiver easily extracts the desired signal from a received signal for several multiple access interference scenarios. We measure the system performance in terms of bit error rate, as well as auto-to cross-correlation contrast. A transmission rate of 500 Mb/s per user is supported in a system with up to 30 simultaneous users at 10-9 bit error rate. We compare FFH-CDMA to several direct sequence-CDMA systems in terms of bit error rate versus the number of simultaneous users. We show that an optical FFH-CDMA system requires new design criteria for code families, as optical device technology differs significantly from that of radio frequency communications
Keywords :
Bragg gratings; code division multiple access; decoding; encoding; optical fibre networks; optical receivers; Bragg gratings; CDMA; FFH spread spectrum signal generation; FFH-CDMA; all-fiber fast optical frequency-hop code division multiple access; auto-to cross-correlation contrast; bit error rate; code families; code selection; decoding; direct sequence-CDMA systems; encoder; encoding; frequency synthesizer; high communication bit rates; high-bandwidth communications; main lobe sine apodization; multiple Bragg gratings; multiple access interference scenarios; optical device technology; passive optical fast frequency-hop CDMA communications system; radio frequency communications; received signal; spectrum efficiency; system performance; tunable encoder/decoder design; Bit error rate; Bit rate; Bragg gratings; Decoding; Frequency conversion; Frequency synthesizers; Multiaccess communication; Optical devices; Optical frequency conversion; Optical receivers;
Journal_Title :
Lightwave Technology, Journal of