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Dive into the research topics where Oskars Ozoliņš is active.

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Featured researches published by Oskars Ozoliņš.


Latvian Journal of Physics and Technical Sciences | 2011

DWDM Transmission Based on the Thin-Film Filter Technology

Oskars Ozoliņš; Vjaceslavs Bobrovs; Girts Ivanovs

DWDM Transmission Based on the Thin-Film Filter Technology A dense wavelength division multiplexing (DWDM) transmission scheme with two thin-film filters (FWHM bandwidth 100 GHz and 200 GHz) has been realized to evaluate the minimum channel interval needed for a satisfactory bit error ratio. For this purpose, detailed research was conducted into the impact of the filters on the optical signals de-multiplexing in a DWDM system, in which the measurements of eye diagrams and the optical power spectral densities of a received signal were made. From the results of measurements the minimum channel interval has been found for the optical filters that ensures reliable data transmission and higher spectral efficiency of the whole system. It was found that for a DWDM system with a 100 GHz filter a sufficient channel interval is 75 GHz at 10 Gbit/s data transmission speed, which means that its spectral efficiency is increased from 0.1 bit/s/Hz to 0.1333 bit/s/Hz. DWDM Pārraides Realizācija ar Plāno Kārtiņu Filtru Tehnologiju Autori ir izveidojuši augsta blīvuma viļņgarumdales blīvēšanas (DWDM) pārraides sistēmu ar diviem plāno kārtiņu filtriem (FWHM joslas platums 100 GHz un 200 GHz), lai novērtētu minimālo kanālu intervālu, pie kura ir pietiekami mazs kļūdu koeficients. Tāpēc veikti detalizēti pētījumi par TFF ietekmi uz optisko signālu de-multipleksēšanu DWDM sistēmās. Novērtējums tika veikts ar uztvertā signāla acu diagrammas un optiskās jaudas spektrālā blīvuma mērījumiem. No mērījumu rezultātiem esam atraduši minimālos kanālu intervālus noteiktiem optiskajiem filtriem, lai nodrošinātu drošu datu pārraidi un līdz ar to palielinātu sistēmas kopējo spektrālo efektivitāti. No rezultātiem redzams, ka DWDM pārraides sistēmai ar 100 GHz TFF pietiekošu veiktspēju nodrošina 75 GHz kanālu intervāls pie 10 Gbit/s datu pārraides ātruma un līdz ar to tiek palielināta spektrālā efektivitāte no 0.1 bit/s/Hz līdz 0.1333 bit/s/Hz.


Latvian Journal of Physics and Technical Sciences | 2010

Investigation into the Potentialities of Quasi-Rectangular Optical Filters in HDWDM Systems

Vjaceslavs Bobrovs; Oskars Ozoliņš; Ģ. Ivanovs

Investigation into the Potentialities of Quasi-Rectangular Optical Filters in HDWDM Systems Currently, many research topics in the field of optical transmission systems (mostly grounded on novel modulation techniques) are focused on increasing the total data transmission speed of an individual optical fiber. An alternative - but equally valid - approach to increasing the data transmission is to decrease the WDM channel spacing to high-dense dimensions while keeping the existing data transmission speed for an exact channel. We have developed an experimental HDWDM transmission system based on the quasi-rectangular optical filter technique. The results indicate that for 2.5 Gbit/s HDWDM transmission the suitable channel interval should be greater than 25 GHz, and for the 10 Gbit/s HDWDM solution - not less than 37.5 GHz between adjacent channels. Kvazi-Taisnstūra Optiskā Filtra Iespēju Izpēte Hdwdm Sistēmās Liela daļa no pētījumiem optiskajās pārraides sistēmās koncentrējas uz individuālas optiskās šķiedras pārraides ātruma palielināšanu. Vairākums no šiem pētījumiem ir balstīti uz inovatīvām modulācijas metodēm. Alternatīva, bet ekvivalenta pieeja ir WDM sakaru sistēmas kanālu intervāla samazināšana līdz minimāli atļautajam, saglabājot nemainīgu datu pārraides ātrumu konkrētam kanālam. Publikācijā ir parādīts eksperimentāls HDWDM pārraides sistēmas makets ar kvazi-taisnstūra filtrēšanas tehniku. Mērījumu rezultāti liecina, ka 2,5 Gbit/s HDWDM pārraides sistēmu ir iespējams realizēt ar 25 GHz kanālu intervālu, savukārt, 10 Gbit/s HDWDM pārraides sistēmā kanālu intervāls starp blakus esošajiem kanāliem jāizvēlas ne mazāks kā 37,5 GHz.


publication.editionName | 2012

Demonstration of Cascaded In-Line Single-Pump Fiber Optical Parametric Amplifiers in Recirculating Loop Transmission

Zohreh Lali-Dastjerdi; Oskars Ozoliņš; Yi An; Valentina Cristofori; Francesco Da Ros; Ning Kang; Hao Hu; Hans Christian Hansen Mulvad; Karsten Rottwitt; Michael Galili; Christophe Peucheret


publication.editionName | 2012

41.6 Gb/s RZ-DPSK to NRZ-DPSK Format Conversion in a Microring Resonator

Meng Xiong; Oskars Ozoliņš; Yunhong Ding; Bo Huang; Yi An; Haiyan Ou; Christophe Peucheret; Xinliang Zhang


publication.editionName | 2015

All-Optical NRZ-to-PRZ Format Conversion Limitations Using Notch Filters

Oskars Ozoliņš; Iļja Trifonovs; Rolands Parts; Vjaceslavs Bobrovs


publication.editionName | 2014

Impact of Cascaded MRRs on All-Optical Clock Recovery from 40 Gbit/s RZ-OOK Signal

Oskars Ozoliņš; Rolands Parts; Vjaceslavs Bobrovs


publication.editionName | 2013

Cascadability of Uniform Fibre Bragg Grating for 40 Gbit/s RZ-OOK to NRZ-OOK Conversion

Oskars Ozoliņš; Vjaceslavs Bobrovs; Ģirts Ivanovs


publication.editionName | 2013

Binary PolSK to OOK Modulation Format Conversion in Single-Pump FOPA for Optical Access Networks

Sergejs Olonkins; Oskars Ozoliņš; Vjaceslavs Bobrovs; Jurģis Poriņš; Ģirts Ivanovs


publication.editionName | 2013

Conversion of 40 Gbit/s RZ-OOK to NRZ-OOK with a Single Uniform Fibre Bragg Grating

Oskars Ozoliņš; Vjaceslavs Bobrovs; Ģirts Ivanovs


Archive | 2013

Chapter 8: Fiber Bragg Grating Technology for New Generation Optical Access Systems

Oskars Ozoliņš; Vjaceslavs Bobrovs; Jurģis Poriņš; Ģirts Ivanovs

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Yi An

Technical University of Denmark

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Yunhong Ding

Technical University of Denmark

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Meng Xiong

Huazhong University of Science and Technology

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Xinliang Zhang

Huazhong University of Science and Technology

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Bo Huang

Technical University of Denmark

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Haiyan Ou

Technical University of Denmark

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Zohreh Lali-Dastjerdi

Technical University of Denmark

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Rolands Parts

Riga Technical University

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