Abstract:
Una red de comunicación inalámbrica virtualizada que comprende: una red de malla de tecnología de acceso de radio múltiple heterogénea, RAT (300; 500; 600; 710, 720) que comprende nodos multi-RAT (310, 320, 330; 512, 514, 516; 612, 614, 616; 722); y un componente de nube informática (340; 530; 630; 730), estando la red de malla acoplada en comunicación al componente de nube informática, comprendiendo el componente de nube informática además un procesador de propósito general y un acelerador, comprendiendo el procesador y el acelerador: un proxy de pasarela, GW, S1 configurado para virtualizar todas las radios de Evolución a Largo Plazo, LTE, en los nodos multi-RAT y facilitar los traspasos hacia y desde LTE; una pasarela de acceso inalámbrico, WAG/pasarela de acceso de movilidad, MAG, configurada para controlar múltiples puntos de acceso, proporcionar conectividad inalámbrica y facilitar el traspaso entre redes Wi-Fi y redes LTE para los nodos multi-RAT; y un proxy Iu configurado para virtualizar todas las radios de tercera generación, 3, en los nodos multi-RAT y facilitar los traspasos a y desde 3G.
Abstract:
This application discloses methods for creating self-organizing networks implemented on heterogeneous mesh networks. The self-organizing networks can include a computing cloud component coupled to the heterogeneous mesh network. In the methods and computer-readable mediums disclosed herein, a processor receives an environmental condition for a mesh network. The processor may have measured the environmental condition, or it could have received it from elsewhere, e.g., internally stored information, a neighboring node, a server located in a computing cloud, a network element, user equipment ("UE"), and the like. After receiving the environmental condition, the processor evaluates it and determines whether an operational parameter within the mesh network should change to better optimize network performance.
Abstract:
We disclose systems and methods of dynamically virtualizing a wireless communication network. The communication network is comprised of heterogeneous multi-RAT mesh nodes coupled to a computing cloud component. The computing cloud component virtualizes the true extent of the resources it manages and presents an interface to the core network that appears to be a single base station.
Abstract:
This application discloses methods for creating self-organizing networks implemented on heterogeneous mesh networks. The self-organizing networks can include a computing cloud component coupled to the heterogeneous mesh network. In the methods and computer-readable mediums disclosed herein, a processor receives an environmental condition for a mesh network. The processor may have measured the environmental condition, or it could have received it from elsewhere, e.g., internally stored information, a neighboring node, a server located in a computing cloud, a network element, user equipment (“UE”), and the like. After receiving the environmental condition, the processor evaluates it and determines whether an operational parameter within the mesh network should change to better optimize network performance.
Abstract:
We disclose systems and methods of dynamically virtualizing a wireless communication network. The communication network is comprised of heterogeneous multi-RAT mesh nodes coupled to a computing cloud component. The computing cloud component virtualizes the true extent of the resources it manages and presents an interface to the core network that appears to be a single base station.