Title :
Scalable In-Band Optical Notch-Filter Labeling for Ultrahigh Bit Rate Optical Packet Switching
Author :
Medhin, Ashenafi K. ; Galili, Michael ; Oxenlowe, Leif K.
Author_Institution :
Dept. of Photonics Eng., Tech. Univ. of Denmark, Lyngby, Denmark
Abstract :
We propose a scalable in-band optical notch-filter labeling scheme for optical packet switching of high-bit-rate data packets. A detailed characterization of the notch-filter labeling scheme and its effect on the quality of the data packet is carried out in simulation and verified by experimental demonstrations. The scheme is able to generate more than 91 different labels that can be applied to 640-Gb/s optical time division multiplexed packets causing an eye opening penalty of <;1.2-dB. Experimental demonstration shows that up to 256 packets can be uniquely labeled by employing up to eight notch filters with only 0.9-dB power penalty to achieve BER of 1E-9. Using the proposed labeling scheme, optical packet switching of 640 Gb/s data packets is experimentally demonstrated in which two data packets are labeled by making none and one spectral hole using a notch filter and are switched using a LiNbO3 switch. The performance of the two data packets before/after switching is investigated by BER measurements and all 256 data channels achieve BER 1E-9 at the expense of only 4.1-dB total system penalty.
Keywords :
error statistics; lithium compounds; notch filters; optical communication equipment; optical filters; packet switching; BER measurements; LiNbO3; bit rate 640 Gbit/s; data channels; eye opening penalty; high-bit-rate data packets; optical time division multiplexed packets; power penalty; scalable in-band optical notch-filter labeling scheme; spectral hole; ultrahigh bit rate optical packet switching; Bandwidth; Bit rate; Labeling; Optical packet switching; Optical pulses; Optical switches; Optical transmitters; In-band labeling; Optical packet switching; inband labeling; notch filtering; optical labeling; optical packet switching;
Journal_Title :
Lightwave Technology, Journal of
DOI :
10.1109/JLT.2014.2367106