We focus on Nyquist-WDM-based flexible optical networks and examine the impact of introducing flexibility in physical layer design parameters on the network level performance. The considered physical layer parameters include the modulation format, the symbol-rate, the inter-subcarrier spacing, the inter-superchannel spacing, and the launch power. In order to examine the impact of allowing the symbol rate to be tuned on a super channel basis, three alternative launch power schemes are considered: (i) optimum launch power, (ii) constant launch power, and (iii) constant power spectral density. Case study results from a realistic reference core network highlight the identified trade-offs with respect to the utilized spectrum and the required tr...
We experimentally evaluate flex-grid network upgrade scenarios, employing variable data rates and mo...
A remotely seeded flexible WDM network solution with 31.25 Gbit/s based on Nyquist sinc-pulses is de...
We investigated a connection provisioning algorithm on an optical infrastructure for three different...
We focus on the spectrally efficient Nyquist-WDM concept and quantify the effect of physical layer d...
The constant growing in traffic demands has driven to look for new methods with which to reduce the ...
We focus on the design of the logical layer on an optical infrastructure for three different archit...
Several spectral efficient solutions for next-generation flexible optical networks are under investi...
Optical access networks have been widely adopted to support the exponential growth in bandwidth dema...
Several spectral efficient solutions for next-generation flexible optical networks are under investi...
We focus on the design of the logical layer on an optical infrastructure for three different archite...
Digitally processed modulations formats such as Nyquist-WDM are investigated for implementation of f...
The advent of Coherent-detection systems supported by Digital-Signal-Processing (DSP) makes it possi...
Network planning and operation in core optical networks require processes that lead to a cost-effect...
Abstract — Introducing a WDM dimension on the top of a TDM PON system is a natural evolution to incr...
We experimentally evaluate flex-grid network upgrade scenarios, employing variable data rates and mo...
A remotely seeded flexible WDM network solution with 31.25 Gbit/s based on Nyquist sinc-pulses is de...
We investigated a connection provisioning algorithm on an optical infrastructure for three different...
We focus on the spectrally efficient Nyquist-WDM concept and quantify the effect of physical layer d...
The constant growing in traffic demands has driven to look for new methods with which to reduce the ...
We focus on the design of the logical layer on an optical infrastructure for three different archit...
Several spectral efficient solutions for next-generation flexible optical networks are under investi...
Optical access networks have been widely adopted to support the exponential growth in bandwidth dema...
Several spectral efficient solutions for next-generation flexible optical networks are under investi...
We focus on the design of the logical layer on an optical infrastructure for three different archite...
Digitally processed modulations formats such as Nyquist-WDM are investigated for implementation of f...
The advent of Coherent-detection systems supported by Digital-Signal-Processing (DSP) makes it possi...
Network planning and operation in core optical networks require processes that lead to a cost-effect...
Abstract — Introducing a WDM dimension on the top of a TDM PON system is a natural evolution to incr...
We experimentally evaluate flex-grid network upgrade scenarios, employing variable data rates and mo...
A remotely seeded flexible WDM network solution with 31.25 Gbit/s based on Nyquist sinc-pulses is de...
We investigated a connection provisioning algorithm on an optical infrastructure for three different...