DocumentCode :
254298
Title :
Parallel FPGA implementation of incoherent OCDMA systems
Author :
Saif, W. ; Aldosari, S. ; Djemal, R. ; Fathallah, H.
Author_Institution :
Electr. Eng. Dept., King Saud Univ., Riyadh, Saudi Arabia
fYear :
2014
fDate :
15-17 Dec. 2014
Firstpage :
164
Lastpage :
168
Abstract :
The potential advantages of optical CDMA (OCDMA) over other multi access techniques attracted considerable interest over the past decade. All-optical implementations of OCDMA are often considered to be too complex to implement especially for cost-sensitive applications. On the other hand, electronic realization of OCDMA encoders/decoders are more cost effective but its throughput is restricted by the electronic processing bottleneck. In this paper, we propose an electronic implementation of OCDMA transceivers that takes advantage of newly emerging high-speed FPGA transceiver technologies, which offer speeds of up to 28 Gb/s. Though the chip rate of the proposed OCDMA system can approach such high speeds, the encoder/decoder processing can operate at much lower speed thanks to the parallel architecture that allows chips to be processed simultaneously. The proposed design benefits from its low resource utilization, which makes it suitable for smaller, affordable FPGA devices. This is in addition to the reconfigurability of FPGA devices, which further reduce the overall system cost.
Keywords :
code division multiple access; codecs; field programmable gate arrays; integrated circuit design; optical communication; optical transceivers; FPGA devices; FPGA transceiver technologies; OCDMA encoders-decoders; OCDMA systems; OCDMA transceivers; bit rate 28 Gbit/s; electronic processing; encoder-decoder processing; multiaccess techniques; optical CDMA; parallel architecture; resource utilization; Decoding; Detectors; Field programmable gate arrays; Optical detectors; Registers; FPGA; OCDMA; OOC;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
High-capacity Optical Networks and Emerging/Enabling Technologies (HONET), 2014 11th Annual
Conference_Location :
Charlotte, NC
Print_ISBN :
978-1-4799-6939-5
Type :
conf
DOI :
10.1109/HONET.2014.7029383
Filename :
7029383
Link To Document :
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