Author of the publication

Contention minimisation in optical burstswitched networks combining traffic engineering in the wavelength domain and delayed ingress burst scheduling.

, , and . IET Communications, 3 (3): 372-380 (2009)

Please choose a person to relate this publication to

To differ between persons with the same name, the academic degree and the title of an important publication will be displayed. You can also use the button next to the name to display some publications already assigned to the person.

 

Other publications of authors with the same name

Multilayer Optimization of Inverse-Multiplexed 100 Gb/s Ethernet Services over Optical Transport Networks., , , and . NGI, page 1-8. IEEE, (2009)Minimizing the Number of Wavelength Converters in Optical Burst-Switched Networks., , and . ICC, page 2371-2376. IEEE, (2007)Performance Study of OBS Networks Using Traffic Engineering in the Wavelength Domain and Delayed Ingress Burst Scheduling., , and . GLOBECOM, page 2777-2782. IEEE, (2008)Wavelength Contention Minimization Strategies for Optical Burst-Switched Networks., , and . GLOBECOM, IEEE, (2006)Contention minimisation in optical burstswitched networks combining traffic engineering in the wavelength domain and delayed ingress burst scheduling., , and . IET Communications, 3 (3): 372-380 (2009)An overview of routing methods in optical burst switching networks., , , , , , and . Optical Switching and Networking, 7 (2): 41-53 (2010)Efficient optical burst-switched networks using only fiber delay line buffers for contention resolution., , and . BROADNETS, page 2-11. IEEE, (2007)Cost-optimized dimensioning of translucent WDM networks with Mixed-Line-Rate spectrum-flexible channels., , and . HPSR, page 185-190. IEEE, (2012)Improving the Performance of Optical Burst-Switched Networks with Limited-Range Wavelength Conversion through Traffic Engineering in the Wavelength Domain., , and . ICOIN, volume 5200 of Lecture Notes in Computer Science, page 21-30. Springer, (2007)Optimization Framework for Supporting 40 Gb/s and 100 Gb/s Services over Heterogeneous Optical Transport Networks., , , and . JNW, 7 (5): 783-790 (2012)