At the verge of the launch of the first commercial fifth generation (5G) system, trends in wireless and optical networks are proceeding toward increasingly dense deployments, supporting resilient interconnection for applications that carry higher and higher capacity and tighter latency requirements. These developments put increasing pressure on network backhaul and drive the need for a re-examination of traditional backhaul topologies. Challenges of impending networks cannot be tackled by star and ring approaches due to their lack of intrinsic survivability and resilience properties, respectively. In support of this re-examination, we propose a backhaul topology design method that formulates the topology optimization as a graph optimization...
Wireless technology is the strongest contender for catering for the 5G backhaul (BH) stipulated perf...
This paper presents an efficient strategy for the optimal network redesign with a biconnectivity-ori...
Currently, 5G and the forthcoming 6G mobile communication systems are the most promising cellular ge...
The increasing number of mobile devices and high-speed services accelerate the growth of traffic in ...
This work establishes the novel category of coordinated Wireless Backhaul Networks (WBNs) for energy...
The radio-frequency (RF) technology is a scalable solution for the backhaul planning. However, its p...
In this paper, we study the problem of topology optimization and routing in integrated access and ba...
The multi-layer network design problem and the mobile backhaul problem are both interesting from the...
Abstract — This paper falls in the area of survivable topology design where the goal is to design ro...
With the densification of nodes in cellular networks, free space optic (FSO) connections are becomin...
The exponentially increasing traffic demand for mobile services requires innovative solutions in bot...
Optical wireless networks have appealing features such as very high broadband data rates and cost ef...
In 5G and Beyond networks the ultra-densification of networks will require ultra-high backhaul capac...
Abstract—With the recent popularity of mobile data de-vices, the demand for mobile data traffic has ...
With the advent of 5G, cellular networks require a high number of base stations, possibly interconne...
Wireless technology is the strongest contender for catering for the 5G backhaul (BH) stipulated perf...
This paper presents an efficient strategy for the optimal network redesign with a biconnectivity-ori...
Currently, 5G and the forthcoming 6G mobile communication systems are the most promising cellular ge...
The increasing number of mobile devices and high-speed services accelerate the growth of traffic in ...
This work establishes the novel category of coordinated Wireless Backhaul Networks (WBNs) for energy...
The radio-frequency (RF) technology is a scalable solution for the backhaul planning. However, its p...
In this paper, we study the problem of topology optimization and routing in integrated access and ba...
The multi-layer network design problem and the mobile backhaul problem are both interesting from the...
Abstract — This paper falls in the area of survivable topology design where the goal is to design ro...
With the densification of nodes in cellular networks, free space optic (FSO) connections are becomin...
The exponentially increasing traffic demand for mobile services requires innovative solutions in bot...
Optical wireless networks have appealing features such as very high broadband data rates and cost ef...
In 5G and Beyond networks the ultra-densification of networks will require ultra-high backhaul capac...
Abstract—With the recent popularity of mobile data de-vices, the demand for mobile data traffic has ...
With the advent of 5G, cellular networks require a high number of base stations, possibly interconne...
Wireless technology is the strongest contender for catering for the 5G backhaul (BH) stipulated perf...
This paper presents an efficient strategy for the optimal network redesign with a biconnectivity-ori...
Currently, 5G and the forthcoming 6G mobile communication systems are the most promising cellular ge...