Journal of Lightwave Technology · 2001 · 49 citations · 5 references
Dual HomingPhotonicsFree-space Optical NetworkEngineeringOptical AmplificationOptical Transmission SystemOptical NetworksOptical PropertiesHigh SplittingPassive Optical NetworkOptical Wireless CommunicationOptical Fiber CommunicationRadio Over FiberOptical CommunicationRedundancy StrategiesOptoelectronicsOptical NetworkingRedundancy Provision
High splitting, optically amplified, passive optical networks (SuperPONs) are investigated in terms of redundancy provision and protection mechanisms. Options for redundancy, including the important special case of dual homing, are detailed, and it is determined as to which of these options (duplication of the feeder and first distribution section, and N+1 protection of the optical amplifiers in the amplified splitter) would be required to be provided to all attached users to facilitate appropriate availability of the basic telephony service. The distributed amplified splitter dual homing solution is found to outperform the single amplified splitter solution in terms of its survivability. The protection mechanisms necessary to automatically switch to the redundant provision are discussed and it is seen that with the aid of suitable regular precautionary procedures protection switching can generally be provided rapidly (<50 ms). Finally, an availability, and cost versus availability, study confirms the aforementioned redundancy assessment for fiber-to-the-home (FTTH) implementations, but shows fiber-to-the-curb (FTTC) as needing additional redundancy.
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The full services access networks initiative
D.W. Faulkner, R. Mistry, T. Rowbotham et al. · IEEE Communications Magazine · 1997 · 29 citations
Gateway (Telecommunications), Secure Network Access, Engineering +14
M.O. van Deventer, John Angelopoulos, H Binsma et al. · Proceedings of SPIE, the International Society for Optical Engineering/Proceedings of SPIE · 1996 · 19 citations
Network topologies for SuperPON
Ilse Van De Voorde, M.O. van Deventer, Peter J. Peters et al. · 2002 · 17 citations
Generic Architecture, Engineering, Time-division Multiplexing +16