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Tomáš Ivaniga
Petr Ivaniga



Author(s) and WSEAS

Tomáš Ivaniga
Petr Ivaniga


WSEAS Transactions on Circuits and Systems


Print ISSN: 1109-2734
E-ISSN: 2224-266X

Volume 18, 2019

Notice: As of 2014 and for the forthcoming years, the publication frequency/periodicity of WSEAS Journals is adapted to the 'continuously updated' model. What this means is that instead of being separated into issues, new papers will be added on a continuous basis, allowing a more regular flow and shorter publication times. The papers will appear in reverse order, therefore the most recent one will be on top.


Volume 18, 2019



OTDR Measurements on PON Network with Utilization of Optical Fiber G.652.D

AUTHORS: Tomáš Ivaniga, Petr Ivaniga

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ABSTRACT: This article is devoted to the measurement and analysis of passive optical networks PON (Passive Optical Network) with and without utilization PLC (Planar Lightwave Circuit) splitter. The real network simulation is done as a prevention of complications in the final construction of optical network, which is designed for specific user requirements. The article describes connections between two campuses. The optical networks were first designed, and afterwards simulated and implemented. These buildings are connected by single mode fiber G.652.D (706.4 m) terminated with SC / PC and optical splitter (PLC) with the ratio of 1:8 and insertion loss of 10.8 dB. Main contribution of this paper was comparison of the difference between measured parameters of optical networks and demonstration when it is better to use an optical splitter, and when it is better to connect the fibre directly.

KEYWORDS: - OTDR, Optical splitter, PLC, PON

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[2] Ivaniga, P., Kureková, S., Ivaniga, T., The Influence of Bit Error Rate on DWDM system with Different Pumping Powers in EDFA, IOSR Journal of Electronics and Communication Engineering, vol. 14, no. 1, 2019, pp. 22-30.

[3] Ghatak, A., Thyagarajan, K., FIBER OPTIC ESSENTIALS, 2007, ISBN 978-0-470-09742-7, 259 pp.

[4] Sivakami, S., Ramprabu, G., Hemamalini, V., Veronica, K., Thirupoorani C., Fiber Fault Localization in FTTH Using Online Monitoring, International Journal of Innovative Research in Computer and Communication Engineering, vol. 3, no. 3, 2015, pp. 1763-1768.

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[6] ITU-T.G.652 – Characteristics of a single-mode optical fibre and cable

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[10] Mastang, M., Rahman, A., Jumari, K., Multi Access Detection System for Line Monitoring in Fiber To The Home (FTTH), Space Science and Communication, 2009. IconSpace 2009. International Conference, vol. 26, no. 27, 2009, pp. 123-125.

[11] EXFO| “Telecom Test and Service Assurance”, Canada 10/09, User Guide.

[12] Arora, O., Garg, A. K., Punia, S., Symmetrical Dispersion Compensation For High Speed Optical Links, IJCSI International Journal of Computer Science Issues, vol. 8 ,no. 1, 2011, pp. 371-376,

[13] Steingartner, W., Novitzká, V., Categorical model of structural operational semantics for imperative language, Journal of Information and Organizational Sciences, vol. 40, no. 2, 2016, pp. 203-219.

[14] Gawade, S. B., Mer, S. B., Testing and Loss Measurement Techniques in Optical FIBER for Healthy Optical FIBER Communication, IOSR Journal of Electronics and Communication Engineering, vol. 10, no. 3, 2015, pp. 54-56.

WSEAS Transactions on Circuits and Systems, ISSN / E-ISSN: 1109-2734 / 2224-266X, Volume 18, 2019, Art. #4, pp. 21-25


Copyright © 2019 Author(s) retain the copyright of this article. This article is published under the terms of the Creative Commons Attribution License 4.0

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