Results 201 to 210 of about 267,024 (268)
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Survivability in optical networks
IEEE Network, 2000Survivability, the ability of a network to withstand and recover from failures, is one of the most important requirements of networks. Its importance is magnified in fiber optic networks with throughputs on the order of gigabits and terabits per second.
Dongyun Zhou, Suresh Subramaniam 0001
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Bell Labs Technical Journal, 2002
The surge in demand for access technologies such as cable modems, xDSL, and wireless data suggests that information will be the most valuable commodity in this new millennium. Eventually, data will constitute 99% of the content sent over telecommunications networks.
Harvey Epstein +3 more
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The surge in demand for access technologies such as cable modems, xDSL, and wireless data suggests that information will be the most valuable commodity in this new millennium. Eventually, data will constitute 99% of the content sent over telecommunications networks.
Harvey Epstein +3 more
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Optical fibers for optical networking
Bell Labs Technical Journal, 2002This paper describes the influence of optical networking on the design of optical fibers. It reviews fundamental optical properties, describes the various fiber types, discusses the fiber requirements for optical networking, and considers the effects of fiber nonlinearities. Finally, the paper describes three new optical fibers from Lucent Technologies
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Optical Fiber Communication Conference (OFC) 2023, 2003
We will explore the architecture of optical satellite networks at 100G-1Tbps. The challenge is to architect the system and the network protocols with large bandwidth-delay products and the presence of atmospheric turbulence and weather.
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We will explore the architecture of optical satellite networks at 100G-1Tbps. The challenge is to architect the system and the network protocols with large bandwidth-delay products and the presence of atmospheric turbulence and weather.
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Optical communications networks
IEEE Communications Magazine, 2016The field of optical communications continues to evolve to meet the ever increasing demands for capacity, flexibility, scalability, and security. In this second installment of the Optical Communications Networks Series in 2016, we have selected six contributions that address physical layer security in optical networks, resource optimization in cloud ...
Admela Jukan, Xiang Liu
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Proceedings of the IEEE, 1989
Classical optical information processing and classical neural networks can be adapted and combined to create optical neural networks which offer significant and fundamental advantages over electronic neural networks in various well-defined cases. A systematic morphology of optical neural networks is presented. Special problems they create are discussed.
H. John Caulfield +2 more
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Classical optical information processing and classical neural networks can be adapted and combined to create optical neural networks which offer significant and fundamental advantages over electronic neural networks in various well-defined cases. A systematic morphology of optical neural networks is presented. Special problems they create are discussed.
H. John Caulfield +2 more
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Computer, 1987
With advances in technology and the declining cost of computer hardware, it is now feasible to design computer architectures consisting of large numbers of processors executing programs concurrently. Most parallel computing architectures can be generally classified into SIMD and MIMD systems. SIMD processors simultaneously and synchronously execute the
Alexander A. Sawchuk +3 more
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With advances in technology and the declining cost of computer hardware, it is now feasible to design computer architectures consisting of large numbers of processors executing programs concurrently. Most parallel computing architectures can be generally classified into SIMD and MIMD systems. SIMD processors simultaneously and synchronously execute the
Alexander A. Sawchuk +3 more
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Multicasting in Optical Networks
2001Optics is a key technology in communication networks to enable bandwidth intensive applications, such as video conferencing, real-time medical imaging, broadcasting services to home [5]. Readers interested in the relevant aspects of fiber optic technology are referred to [11,15,17].
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