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Statements

Subject Item
n2:RIV%2F61989100%3A27240%2F14%3A86092908%21RIV15-TA0-27240___
rdf:type
skos:Concept n19:Vysledek
dcterms:description
The aim of this article is to highlight possible unwanted behaviour of an EDFA optical amplifier during temperature changes. After a brief introduction dealing with amplifiers and doped fibers in general we focus on the assembly of our own EDFA amplifier with standard construction and the IsoGain I-6 amplifying fiber, and on the parameters of its individual components. Since an erbium doped fiber has usually no direct thermal stabilization, temperature changes can affect performance of the entire amplifier. The next part of the article therefore describes the impacts of such changes on behaviour of our amplifier. At the very end we performed a measurement of the amplifier deployed in the actual WDM-PON the description of which can be found in the last chapter. The aim of this article is to highlight possible unwanted behaviour of an EDFA optical amplifier during temperature changes. After a brief introduction dealing with amplifiers and doped fibers in general we focus on the assembly of our own EDFA amplifier with standard construction and the IsoGain I-6 amplifying fiber, and on the parameters of its individual components. Since an erbium doped fiber has usually no direct thermal stabilization, temperature changes can affect performance of the entire amplifier. The next part of the article therefore describes the impacts of such changes on behaviour of our amplifier. At the very end we performed a measurement of the amplifier deployed in the actual WDM-PON the description of which can be found in the last chapter.
dcterms:title
Measuring Optimal Length of the Amplifying Fiber in Different Working Conditions of the Amplifier Measuring Optimal Length of the Amplifying Fiber in Different Working Conditions of the Amplifier
skos:prefLabel
Measuring Optimal Length of the Amplifying Fiber in Different Working Conditions of the Amplifier Measuring Optimal Length of the Amplifying Fiber in Different Working Conditions of the Amplifier
skos:notation
RIV/61989100:27240/14:86092908!RIV15-TA0-27240___
n3:aktivita
n17:S n17:P
n3:aktivity
P(EE2.3.20.0217), P(TA03020439), P(TA04021263), S
n3:cisloPeriodika
6
n3:dodaniDat
n12:2015
n3:domaciTvurceVysledku
n11:9216022 n11:3582019 n11:7685157 n11:6861369 n11:5562023 n11:7462417
n3:druhVysledku
n15:J
n3:duvernostUdaju
n6:S
n3:entitaPredkladatele
n10:predkladatel
n3:idSjednocenehoVysledku
27997
n3:idVysledku
RIV/61989100:27240/14:86092908
n3:jazykVysledku
n13:eng
n3:klicovaSlova
WDM; thermal stress; rare earths; PON; optical amplifier; erbium; EDFA
n3:klicoveSlovo
n4:optical%20amplifier n4:EDFA n4:PON n4:rare%20earths n4:erbium n4:thermal%20stress n4:WDM
n3:kodStatuVydavatele
CZ - Česká republika
n3:kontrolniKodProRIV
[1B1A1DDF749D]
n3:nazevZdroje
Advances in Electrical and Electronic Engineering
n3:obor
n14:JA
n3:pocetDomacichTvurcuVysledku
6
n3:pocetTvurcuVysledku
7
n3:projekt
n5:TA04021263 n5:EE2.3.20.0217 n5:TA03020439
n3:rokUplatneniVysledku
n12:2014
n3:svazekPeriodika
12
n3:tvurceVysledku
Čubík, Jakub Pobořil, Radek Látal, Jan Smrž, Martin Vašinek, Vladimír Šiška, Petr Kepák, Stanislav
s:issn
1336-1376
s:numberOfPages
10
n16:doi
10.15598/aeee.v12i6.939
n18:organizacniJednotka
27240