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Publikacje Pracowników Politechniki Lubelskiej

MNiSW
140
Lista 2021
Status:
Autorzy: Przystupa Krzysztof, Beshley Mykola, Kaidan Mykola, Andrushchak Volodymyr, Demydov Ivan, Kochan Orest, Pieniak Daniel
Dyscypliny:
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Rok wydania: 2020
Wersja dokumentu: Drukowana | Elektroniczna
Język: angielski
Numer czasopisma: 23
Wolumen/Tom: 13
Numer artykułu: 6370
Strony: 1 - 21
Impact Factor: 3,004
Web of Science® Times Cited: 2
Scopus® Cytowania: 4
Bazy: Web of Science | Scopus
Efekt badań statutowych NIE
Finansowanie: This research was supported by the project No. 0120U102201 “Development the methods and unified software-hardware means for the deployment of the energy efficient intent-based multi-purpose information and communication networks”. This work was supported by the Ministry of Education and Science of Ukraine under project for young researches (no 0119U100435). This work was financed in the framework of the project Lublin University of Technology—Regional Excellence Initiative, funded by the Polish Ministry of Science and Higher Education, contract no. 030/RID/2018/19 and contract no. FN-31/E/EE/2020.
Materiał konferencyjny: NIE
Publikacja OA: TAK
Licencja:
Sposób udostępnienia: Witryna wydawcy
Wersja tekstu: Ostateczna wersja opublikowana
Czas opublikowania: W momencie opublikowania
Data opublikowania w OA: 2 grudnia 2020
Abstrakty: angielski
In communication networks, the volume of traffic, the number of connected devices and users continues to grow. As a result, the energy consumption generated by the communication infrastructure has become an important parameter that needs to be carefully considered and optimized both when designing the network and when operating it in real-time. In this paper, the methodology of calculation of complex parameters of energy consumption for transport telecommunication networks is proposed. Unlike the known techniques, the proposed methodology takes into account heterogeneity and multilayer networks. It also takes into account the energy consumption parameter during the downtime of the network equipment in the process of processing the service data blocks, which is quite an important task for improving the accuracy of energy consumption at the stage of implementing the energy-saving network. We also developed simulation software to estimate and manage the energy consumption of the optical transport network using the LabVIEW environment. This software tool allows telecommunication network designers to evaluate energy consumption, which allows them to choose the optimal solution for the desired projects. The use of electro-and acousto-optical devices for optical transport networks is analyzed. We recommended using electro-optical devices for optical modulators and acousto-optical devices for optical switches. The gain from using this combination of optical devices and the parameter of rij electro-optical coefficient and M2 acousto-optical quality parameter found in the paper is about 36.1% relative to the complex criterion of energy consumption.