Abstract:
A method, computer readable medium and apparatus for transmitting signaling information within payload traffic. For example, the method parses a certificate received from a service provider to obtain service imprint information associated with a mobile service, inserts a service control parameter derived from the service imprint information into a packet header, and forwards the packet header within payload traffic to a policy charging and enforcing function.
Abstract:
A cache server disposed in a motor vehicle receives and caches content from a content distribution network when a load of a cellular link to the content distribution network is low. The cache server determines that the motor vehicle is turned off, broadcasts a wireless signal as part of a wireless network when the motor vehicle is turned off, and provides a device access to the content cached in the cache server via the wireless network.
Abstract:
A method, computer readable medium and apparatus for transmitting signaling information within payload traffic. For example, the method parses a certificate received from a service provider to obtain service imprint information associated with a mobile service, inserts a service control parameter derived from the service imprint information into a packet header, and forwards the packet header within payload traffic to a policy charging and enforcing function.
Abstract:
Aspects describe using a Policy Access Gateway that can facilitate scalability within a communication network and that can provide a solution to deploy an enhanced policy gateway. The Policy Access Gateway can enhance standard defined Diameter Routing Agent (DRA) functions with session binding mechanisms. Further, the Policy Access Gateway is scalable and can be deployed in a very large network that supports hundreds of millions of users. Further, the Policy Access Gateway can provide additional policy information to enable policy information consolidation and caching capabilities.
Abstract:
A network core with a software defined networking (“SDN”) controller is provided to control routing of traffic within the network and between the network and the traffic destination. The SDN controller is merged with existing 3rd Generation Partnership Project (“3GPP”) network architecture to enable service deliveries via open application programming interfaces (“APIs”) and move the network core towards an all internet protocol (“IP”), cloud based, and software driven telecom network. The SDN controller can work with, or take the place of policy and charging rules function (“PCRF”) network elements, so that policies such as quality of service and traffic management and routing can be synchronized and managed end to end.
Abstract:
Devices, systems, and methods are provided for managing personal information by providing a centralized source or database for a user's information and enabling the user to regulate privacy levels for each information item or category of information. Templates are provided as a table of hierarchies or an onion layers model. Private information may be stored in an inner layer while public information may be stored in an outer layer, and multiple layers and categories can be defined and customized within the template. A requesting entity requests information via a disseminating server that acts as a gateway for authenticating, authorizing, and providing access to the requesting entity. The user may therefore control and regulate their online presence simply by monitoring who requests their information and adjusting privacy levels accordingly.
Abstract:
A cache server disposed in a motor vehicle receives and caches content from a content distribution network when a load of a cellular link to the content distribution network is low. The cache server determines that the motor vehicle is turned off, broadcasts a wireless signal as part of a wireless network when the motor vehicle is turned off, and provides a device access to the content cached in the cache server via the wireless network.
Abstract:
Improving wireless service subscriber experiences by dynamically managing wireless communication resources using a big data analytic mechanism is presented herein. A method can include receiving, by a system comprising a processor via a software-based interface of a control plane of a communication network, service data corresponding to a request for a wireless communication service; receiving, by the system via the software-based interface of the control plane, contextual data corresponding to a subscription of the wireless communication service; receiving, by the system via the software-based interface of the control plane, network data corresponding to data packet transmissions of a network device within a data plane of the communication network; and configuring, by the system via the software-based interface of the control plane based on a defined set of policies, the service data, the contextual data, and the network data, a resource of the data plane corresponding to the wireless communication service.
Abstract:
Aspects describe using a Policy Access Gateway that can facilitate scalability within a communication network and that can provide a solution to deploy an enhanced policy gateway. The Policy Access Gateway can enhance standard defined Diameter Routing Agent (DRA) functions with session binding mechanisms. Further, the Policy Access Gateway is scalable and can be deployed in a very large network that supports hundreds of millions of users. Further, the Policy Access Gateway can provide additional policy information to enable policy information consolidation and caching capabilities.
Abstract:
A context-aware network service engine is employed to support integrated network. In one aspect, the network service engine can receive a message associated with the user's intent and/or situation via a standard and/or open application programming interface (API). Based on an analysis of the message with context data and/or defined policy data, the network service engine can establish procedures to provide integrated services. The integrated services can comprise multiple communication services that are initiated simultaneously (or substantially simultaneously) in response to receiving the message. As an example, the context data can comprise user-related data, real-time network resource availability, presence data, and the like. As an example, the network services can be initiated concurrently and/or in a specified order.