Ultra-dense heterogeneous networks, as a novel network architecture in the fifth-generation mobile communication system (5G), promise ubiquitous connectivity and smooth experience, which take advantage of multiple radio access technologies (RATs), such as WiFi, UMTS, LTE, and WiMAX. However, the dense environment of multi-RATs challenges the network selection because of the more frequent and complex decision process along with increased complexity. Introducing artificial intelligence to ultra-dense heterogeneous networks can improve the way we address network selection today, and can execute efficient and intelligent network selection. Whereas, there still exist difficulties to be noted. On one hand, the contradiction between real-time comm...
International audienceThe migration of wireless networking towards the 5G era is distinguished by th...
International audienceThe migration of wireless networking towards the 5G era is distinguished by th...
International audienceThe migration of wireless networking towards the 5G era is distinguished by th...
International audienceWhen several radio access technologies (e.g., HSPA, LTE, WiFi and WiMAX) cover...
Networks will continue to become increasingly heterogeneous as we move toward 5G. Meanwhile, the int...
International audienceWhen several radio access technologies (e.g., HSPA, LTE, WiFi and WiMAX) cover...
International audienceWhen several radio access technologies (e.g., HSPA, LTE, WiFi and WiMAX) cover...
International audienceWhen several radio access technologies (e.g., HSPA, LTE, WiFi and WiMAX) cover...
International audienceWhen several radio access technologies (e.g., HSPA, LTE, WiFi and WiMAX) cover...
Future wireless networks (e.g., 5G) will consist of multiple radio access technologies (RATs). In th...
This paper presents a control solution for the optimal network selection problem in 5G heterogeneous...
In next-generation networks, users can optimize the choice with seamless transfer of different acces...
International audienceWhen several radio access technologies (e.g., HSPA, LTE, WiFi and WiMAX) cover...
International audienceThe migration of wireless networking towards the 5G era is distinguished by th...
International audienceThe migration of wireless networking towards the 5G era is distinguished by th...
International audienceThe migration of wireless networking towards the 5G era is distinguished by th...
International audienceThe migration of wireless networking towards the 5G era is distinguished by th...
International audienceThe migration of wireless networking towards the 5G era is distinguished by th...
International audienceWhen several radio access technologies (e.g., HSPA, LTE, WiFi and WiMAX) cover...
Networks will continue to become increasingly heterogeneous as we move toward 5G. Meanwhile, the int...
International audienceWhen several radio access technologies (e.g., HSPA, LTE, WiFi and WiMAX) cover...
International audienceWhen several radio access technologies (e.g., HSPA, LTE, WiFi and WiMAX) cover...
International audienceWhen several radio access technologies (e.g., HSPA, LTE, WiFi and WiMAX) cover...
International audienceWhen several radio access technologies (e.g., HSPA, LTE, WiFi and WiMAX) cover...
Future wireless networks (e.g., 5G) will consist of multiple radio access technologies (RATs). In th...
This paper presents a control solution for the optimal network selection problem in 5G heterogeneous...
In next-generation networks, users can optimize the choice with seamless transfer of different acces...
International audienceWhen several radio access technologies (e.g., HSPA, LTE, WiFi and WiMAX) cover...
International audienceThe migration of wireless networking towards the 5G era is distinguished by th...
International audienceThe migration of wireless networking towards the 5G era is distinguished by th...
International audienceThe migration of wireless networking towards the 5G era is distinguished by th...
International audienceThe migration of wireless networking towards the 5G era is distinguished by th...
International audienceThe migration of wireless networking towards the 5G era is distinguished by th...