Abstract:
Vehicle-to-vehicle and vehicle-to-infrastructure communications are accomplished via a scalable ad hoc geographic routing protocol. As vehicles move along roadways, they can query other vehicles and entities for information. Responses to queries can be used to determine information such as traffic conditions, a retail store sale, that a restaurant has tables available, and/or that parking spaces are available, for example. Businesses, vehicles, and other entities along roadways can geocast pertinent information to vehicles passing by. Vehicles can cache information as it is received.
Abstract:
An Internet protocol Multimedia Subsystem (IMS) gateway application server includes an originating application server module adapted to invoke call control services in response to requests initiated by a voice over Internet Protocol (IP) (VoIP) client associated with a communication device such as an IP telephone. Disclosed gateway application servers include a proxy server module adapted to notify the communication client of session control messages intended for the communication device.
Abstract:
A method, computer readable medium and apparatus for automatically updating social network profiles are disclosed. For example, the method receives one or more inputs from a subscriber, processes the one or more inputs in accordance with a policy defined by the subscriber to produce an update about the subscriber and publishes the update about the subscriber on one or more social network profiles associated with the subscriber.
Abstract:
A method, computer readable medium and apparatus for automatically updating social network profiles are disclosed. For example, the method receives one or more inputs from a subscriber, processes the one or more inputs in accordance with a policy defined by the subscriber to produce an update about the subscriber and publishes the update about the subscriber on one or more social network profiles associated with the subscriber.
Abstract:
Methods, systems and apparatus are disclosed to facilitate ranked network priority. An example method includes calculating a rank of a first wireless device relative to a plurality of wireless devices based on a first bid value associated with the first wireless device, allocating a first bit rate to the first wireless device based on the rank of the first wireless device at a first time, and in response to detecting a change in availability of the first bit rate at a second time, applying a second bid value for a second bit rate when the first wireless device is located in a first geographic area, and applying a third bid value for the second bit rate when the first wireless device is located in a second geographic area different from the first geographic area.
Abstract:
A method and apparatus for processing at least one information feed are disclosed. For example, the method receives at least one content via at least one automated feed. The method associates the at least one content to one or more geographical locations on a map, wherein the one or more geographical locations are determined from the at least one content. The method then presents an access to the at least one content to a user via the map.
Abstract:
The described technology is generally directed towards a transport protocol for latency sensitive applications. The disclosed transport protocol is “semi-reliable” in that it allows for specification of an importance of data being transmitted, thereby allowing important data to be sent reliably, while other data can be dropped if necessary, e.g., under bad network conditions. A deadline can be specified for such other data, and if the other data cannot be sent prior to the deadline, it can be dropped. Furthermore, the disclosed transport protocol can allow for early discovery of network jitter. A client device can send regular acknowledgments which identify most recently received data packets as well as a number of “heartbeat transmissions” received at the client device. A server device can use the acknowledgments to discover and respond to jitter.
Abstract:
The technologies described herein are generally directed to modeling radio wave propagation in a fifth generation (5G) network or other next generation networks. For example, a method described herein can include, for a network application, identifying, by a system comprising a processor, a characteristic value of a performance characteristic associated with an uplink connection enabled via a network of a user equipment to application server equipment hosting the network application. The method can further include, based on the characteristic value and a criterion, selecting, by the system, a first packet size for the uplink connection. The method can further include communicating, by the system, to the user equipment, the first packet size for use with the uplink connection.
Abstract:
A model-driven system automatically deploys a virtualized service, including multiple service components, on a distributed cloud infrastructure. A master service orchestrator causes a cloud platform orchestrator to retrieve a cloud services archive file, extract a cloud resource configuration template and create cloud resources at appropriate data centers as specified. The master service orchestrator also causes a software defined network controller to retrieve the cloud services archive file, to extract a cloud network configuration template and to configure layer 1 through layer 3 virtual network functions and to set up routes between them. Additionally, the master service orchestrator causes an application controller to retrieve the cloud services archive file, to extract a deployment orchestration plan and to configure and start layer 4 through layer 7 application components and bring them to a state of operational readiness.
Abstract:
Aspects of the subject disclosure may include, for example, receiving, over a communication network, a plurality of requests for frames of video content to provide to a mobile device. Further embodiments can include determining a first portion of the plurality of requests are for pre-fetch frames of the video content, and providing, over the communication network, the pre-fetch frames to the mobile device over a default bearer path. Additional embodiments can include determining a second portion of the plurality of requests are for emergent frames of the video content, and providing, over the communication network, the emergent frames to the mobile device over a dedicated bearer path. Other embodiments are disclosed.