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{"references": ["T. Koonen, \"Fiber to the Home/Fiber to the Premise: What, Where, and\nWhen?,\" Proceedings of the IEEE, 2006, pp.911-934..", "H. Chen, M. Leblanc, O. Plomteux, \"Live-Fiber OTDR Testing: Traffic\nand Measurement Impairments\", EXFO Electro-Optical Engineering\nInc., 2007, pp.1-7.", "A. A. A. Bakar, M. Z. Jamaludin, F. Abdullah, M. H. Yaacob, M. A.\nMahdi, M. K. Abdullah, \"A New Technique of Real-Time Monitoring of\nFiber Optic Cable Networks Transmission\", Optics and Lasers in\nEngineering, vol. 45, 2007,pp.126-130.", "H. Yeh, S. Chi, \"Fiber Fault Monitoring Technique for Passive Optical\nNetworks Based on Fiber Bragg Gratings and Semiconductor Optical\nAmplifier\", Optics Communication, Vol. 257, 2006, pp.306-310", "The Omron Electronic Component Website, 2008 [Online]. Available:\nhttp://components.omron.eu/", "The Microchip Website, 2008 [Online]. Available:\nhttp://www.microchip.com", "PIC18F97J60 Family Data Sheet, Microchip Technology Inc., 2008,\nDoc. no. DS39762DC.", "M. S. A. Rahman, M. T. M. Yusof, \"Development of Optical\nMultifunctional Switch,\" Wireless and Optical Communication Network,\n2008, WOCN -08, 5th IFIP International Conference, pp.1-7."]}
An optical fault monitoring in FTTH-PON using ACS is demonstrated. This device can achieve real-time fault monitoring for protection feeder fiber. In addition, the ACS can distinguish optical fiber fault from the transmission services to other customers in the FTTH-PON. It is essential to use a wavelength different from the triple-play services operating wavelengths for failure detection. ACS is using the operating wavelength 1625 nm for monitoring and failure detection control. Our solution works on a standard local area network (LAN) using a specially designed hardware interfaced with a microcontroller integrated Ethernet.
FTTH-PON., ACS, monitoring tool
FTTH-PON., ACS, monitoring tool
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