dc.contributor.author |
Maziotis, A |
en |
dc.contributor.author |
Schrenk, B |
en |
dc.contributor.author |
Bougioukos, M |
en |
dc.contributor.author |
Avramopoulos, H |
en |
dc.date.accessioned |
2014-03-01T01:35:24Z |
|
dc.date.available |
2014-03-01T01:35:24Z |
|
dc.date.issued |
2011 |
en |
dc.identifier.issn |
1041-1135 |
en |
dc.identifier.uri |
https://dspace.lib.ntua.gr/xmlui/handle/123456789/21036 |
|
dc.subject |
Access networks |
en |
dc.subject |
all-optical switching |
en |
dc.subject |
optical data communication |
en |
dc.subject |
optical signal processing |
en |
dc.subject.classification |
Engineering, Electrical & Electronic |
en |
dc.subject.classification |
Optics |
en |
dc.subject.classification |
Physics, Applied |
en |
dc.subject.other |
Access network |
en |
dc.subject.other |
all-optical switching |
en |
dc.subject.other |
Cognitive routing |
en |
dc.subject.other |
Control signal |
en |
dc.subject.other |
Envelope Detection |
en |
dc.subject.other |
Field deployment |
en |
dc.subject.other |
Optical data |
en |
dc.subject.other |
Optical signals |
en |
dc.subject.other |
Forestry |
en |
dc.subject.other |
Light amplifiers |
en |
dc.subject.other |
Network architecture |
en |
dc.subject.other |
Optical communication |
en |
dc.subject.other |
Optical signal processing |
en |
dc.subject.other |
Optical switches |
en |
dc.subject.other |
Trees (mathematics) |
en |
dc.subject.other |
Light transmission |
en |
dc.subject.other |
Amplifiers |
en |
dc.subject.other |
Forestry |
en |
dc.subject.other |
Mathematics |
en |
dc.subject.other |
Semiconductor Devices |
en |
dc.subject.other |
Transmittance |
en |
dc.title |
Cognitive routing in converged access-metro environment via λ-selective SOA-MZI switch |
en |
heal.type |
journalArticle |
en |
heal.identifier.primary |
10.1109/LPT.2011.2169398 |
en |
heal.identifier.secondary |
http://dx.doi.org/10.1109/LPT.2011.2169398 |
en |
heal.identifier.secondary |
6026226 |
en |
heal.language |
English |
en |
heal.publicationDate |
2011 |
en |
heal.abstract |
A ring+tree architecture for optical intranetwork data transmission between different users is presented. The nodes at the ring contain a packet envelope detection to extract a wavelength-dependent control signal for a semiconductor optical amplifier-based Mach-Zehnder interferometer (SOA-MZI) switch. The scalability of the architecture and the feasibility for field deployment are discussed. A tree split of 1:1000 has been found to be compatible with data transmission over 50 hops. © 2011 IEEE. |
en |
heal.publisher |
IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC |
en |
heal.journalName |
IEEE Photonics Technology Letters |
en |
dc.identifier.doi |
10.1109/LPT.2011.2169398 |
en |
dc.identifier.isi |
ISI:000297095200001 |
en |
dc.identifier.volume |
23 |
en |
dc.identifier.issue |
23 |
en |
dc.identifier.spage |
1820 |
en |
dc.identifier.epage |
1822 |
en |