About Omar Knio Omar Knio Dean, Computer, Electrical and Mathematical Sciences and Engineering uncertainty quantification bayesian inference computational fluids mechanics combustion High Performance Computing Professor Knio focuses on developing state-of-the-art methods and algorithms for simulating complex multiscale systems, and their implementation to the analysis and optimization of renewable energy systems. Events Presented Events Oct 25 - Oct 31, 2020 Webinar on Resource Allocation in Cloud-Radio Access Networks and Fog-Radio Access Networks for B5G Systems Omar Knio, Dean, Computer, Electrical and Mathematical Sciences and Engineering Oct 27, 15:45 - 17:15 KAUST Fog-Radio Access cloud-radio access First Speaker: Megumi Kaneko, National Institute of Informatics, Japan. Talk Title: Resource Allocation in NOMA-Based Fog Radio Access Networks. In this talk, I will first describe the potential benefits offered by the integration of NOMA in an FRAN architecture for achieving the specific objectives of use cases envisioned in B5G, in terms of throughput, latency, reliability and energy efficiency. Second Speaker: Bruno Clerckx, Imperial College London, United Kingdom. Talk Title: Rate-Splitting Multiple Access and its Applications to Cloud-Enabled Platforms. This talk argues that to efficiently cope with the high throughput, reliability, heterogeneity of Quality-of-Service (QoS), and massive connectivity requirements of future multi-antenna wireless networks, multiple access and multiuser communication system design need to depart from the two extreme interference management strategies, namely fully treat interference as noise (as commonly used in 5G, MU-MIMO, CoMP, Massive MIMO, millimetre wave MIMO) and fully decode interference (as in NOMA).
Webinar on Resource Allocation in Cloud-Radio Access Networks and Fog-Radio Access Networks for B5G Systems Omar Knio, Dean, Computer, Electrical and Mathematical Sciences and Engineering Oct 27, 15:45 - 17:15 KAUST Fog-Radio Access cloud-radio access First Speaker: Megumi Kaneko, National Institute of Informatics, Japan. Talk Title: Resource Allocation in NOMA-Based Fog Radio Access Networks. In this talk, I will first describe the potential benefits offered by the integration of NOMA in an FRAN architecture for achieving the specific objectives of use cases envisioned in B5G, in terms of throughput, latency, reliability and energy efficiency. Second Speaker: Bruno Clerckx, Imperial College London, United Kingdom. Talk Title: Rate-Splitting Multiple Access and its Applications to Cloud-Enabled Platforms. This talk argues that to efficiently cope with the high throughput, reliability, heterogeneity of Quality-of-Service (QoS), and massive connectivity requirements of future multi-antenna wireless networks, multiple access and multiuser communication system design need to depart from the two extreme interference management strategies, namely fully treat interference as noise (as commonly used in 5G, MU-MIMO, CoMP, Massive MIMO, millimetre wave MIMO) and fully decode interference (as in NOMA).
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