Heterogeneous mobile networks, HMNs, with flexible spectrum use, densified cell deployment, and multi-layer multiple types of radio access technologies, are expected to be key to meeting the 1000 times increase of mobile data traffic in 2020 and beyond. The increasing complexity in HMNs renders the control and coordination of networks a challenging task. The control frameworks of current cellular networks, which were previously designed for sparse network deployment, hit the wall for HMNs. HMNs need good separation of control and data planes, and call for novel control methods to handle the highly complex dynamics therein. In this article, we first briefly review the control planes of 2G to 4G cellular networks, and then identify their cons...
Internet-of-Things (IoT) applications are envisaged to evolve to support mobility of devices while p...
Resilient high capacity and low delay millimeter wave wireless mesh networks (WMNs) can provide suit...
The factors that will drive the ontogenesis of next generation mobile networks namely are the evolut...
Heterogeneous mobile networks, HMNs, with flexible spectrum use, densified cell deployment, and mult...
Due to copyright restrictions, the access to the full text of this article is only available via sub...
Today’s mobile operators face significant challenges with handling the ever-increasing volume of mob...
Abstract—Existing cellular networks suffer from inflexible and expensive equipment, complex control-...
Military operations are increasingly dependent on networks and transferring of data. A heterogeneous...
Today's mobile customers desire to remain connected anywhere, at any time, and using any device. Thi...
The current mobile network architectures are heavily hierarchical, which implies that all traffic mu...
The current LTE network architecture is organized into very large regions, each having a core networ...
Software-defined networking (SDN) has gained a tremendous attention in the recent years, both in aca...
Wireless networks such as mobile networks, with their inflexible and expensive network infrastructur...
Existing cellular networks suffer from inflexible and expen-sive equipment, and complex control-plan...
International audienceToday's mobile customers desire to remain connected anywhere, at any time, and...
Internet-of-Things (IoT) applications are envisaged to evolve to support mobility of devices while p...
Resilient high capacity and low delay millimeter wave wireless mesh networks (WMNs) can provide suit...
The factors that will drive the ontogenesis of next generation mobile networks namely are the evolut...
Heterogeneous mobile networks, HMNs, with flexible spectrum use, densified cell deployment, and mult...
Due to copyright restrictions, the access to the full text of this article is only available via sub...
Today’s mobile operators face significant challenges with handling the ever-increasing volume of mob...
Abstract—Existing cellular networks suffer from inflexible and expensive equipment, complex control-...
Military operations are increasingly dependent on networks and transferring of data. A heterogeneous...
Today's mobile customers desire to remain connected anywhere, at any time, and using any device. Thi...
The current mobile network architectures are heavily hierarchical, which implies that all traffic mu...
The current LTE network architecture is organized into very large regions, each having a core networ...
Software-defined networking (SDN) has gained a tremendous attention in the recent years, both in aca...
Wireless networks such as mobile networks, with their inflexible and expensive network infrastructur...
Existing cellular networks suffer from inflexible and expen-sive equipment, and complex control-plan...
International audienceToday's mobile customers desire to remain connected anywhere, at any time, and...
Internet-of-Things (IoT) applications are envisaged to evolve to support mobility of devices while p...
Resilient high capacity and low delay millimeter wave wireless mesh networks (WMNs) can provide suit...
The factors that will drive the ontogenesis of next generation mobile networks namely are the evolut...