Abstract:
In one example, a device for assigning a mobile endpoint device to an access point based upon a power state is disclosed. For example, the device may include a processor deployed in a wireless network and a computer-readable medium storing instructions which, when executed by the processor, cause the processor to perform operations. The operations may include detecting power states of a plurality of mobile endpoint devices that are in communication with a first access point of the network, the power states including a first power state of a first mobile endpoint device, determining a loading condition of a region of the wireless network that includes the first access point, and assigning the first mobile endpoint device to a second access point that is outside of the region when the first mobile endpoint device is in the first power state, in response to the determining of the loading condition.
Abstract:
Example methods and apparatus to facilitate communication between a charging station and a vehicle are disclosed. An example apparatus includes a first charging interface to communicatively couple with a second charging interface of a charging station. The example apparatus also includes a communication interface actuatable between a stored position and a deployed position, the communication interface comprising a first radio frequency waveguide, the first radio frequency waveguide to physically engage a second radio frequency waveguide of the charging station to form a electromagnetically sealed waveguide, the electromagnetically sealed waveguide to guide radio frequency communication signals between the communication interface and the charging station.
Abstract:
Enhanced shared media experiences allow viewer's personal devices to receive targeted content. Targeting advertisements and other content to personal devices is cheaper and more effective than broadcast delivery. Advertisers may still target their advertisements during popular programming with purchasing expensive broadcast advertising slots.
Abstract:
Methods, systems, and computer-readable media for preparing for a service disruption are provided. Information relating to an activity at a target location is received. Upon receiving information relating to at least the activity at the target location, stored data related to the activity and the target location are gathered. A probability of a service disruption at the target location based on at least the stored data related to the activity and the target location is assessed and the target location is monitored. Upon detecting a change in services associated to the target location, an alert is generated.
Abstract:
Aspects of the subject disclosure may include, for example, a method comprising receiving an initial request for content from a first user; sending one or more subsequent requests to other user(s), such as those at or near a location associated with the live content; receiving replies from the other users; presenting options to and receiving a selection from the first user; sending a confirmation request to a selected user; and receiving, by the first user, the live content from the selected user. In some embodiments, the method includes charging first user a fee for requesting and/or receiving the live content; and paying a fee to the selected user. The second fee may be specified by the selected user. In any case, the users need not know each other. Other embodiments are disclosed.
Abstract:
Aspects of the subject disclosure may include, for example, receiving video content streams from multiple source mobile devices and identifying that the video content streams pertain to a same event. Additional aspects may include identifying end mobile devices for the video content streams and determining a portion of the end mobile devices are coupled to one communication network and another communication network. Further aspects can include identifying a predicted traffic pattern on the first communication network based on the multiple video content streams pertaining to the same event and that the portion of the multiple end mobile devices are communicatively coupled to the first communication network. Additional aspects may include transmitting a portion of the video content streams across the first communication network and transmitting another portion of the video content streams across the second communication network according to the predicted traffic pattern. Other embodiments are disclosed.
Abstract:
A method includes receiving, at a server, first information provided by a user that identifies a set of people to be monitored. The method includes accessing, at the server, second information associated with a plurality of media streams including a broadcast media stream and a non-broadcast media stream. The second information identifies particular people associated with individual media streams of the plurality of media streams. The method includes generating, at the server, a customized media stream based on a comparison of the first information and the second information. The customized media stream includes media content related to the set of people, where the media content includes at least a portion of the non-broadcast media stream.
Abstract:
Aspects of the subject disclosure may include, for example, receiving video content streams from multiple source mobile devices and identifying that the video content streams pertain to a same event. Additional aspects may include identifying end mobile devices for the video content streams and determining a portion of the end mobile devices are coupled to one communication network and another communication network. Further aspects can include identifying a predicted traffic pattern on the first communication network based on the multiple video content streams pertaining to the same event and that the portion of the multiple end mobile devices are communicatively coupled to the first communication network. Additional aspects may include transmitting a portion of the video content streams across the first communication network and transmitting another portion of the video content streams across the second communication network according to the predicted traffic pattern. Other embodiments are disclosed.
Abstract:
In one example, a device for assigning a mobile endpoint device to an access point based upon a power state is disclosed. For example, the device may include a processor deployed in a wireless network and a computer-readable medium storing instructions which, when executed by the processor, cause the processor to perform operations. The operations may include detecting power states of a plurality of mobile endpoint devices that are in communication with a first access point of the network, the power states including a first power state of a first mobile endpoint device, determining a loading condition of a region of the wireless network that includes the first access point, and assigning the first mobile endpoint device to a second access point that is outside of the region when the first mobile endpoint device is in the first power state, in response to the determining of the loading condition.
Abstract:
Aspects of the subject disclosure may include, for example, participating in a communication session over a network with a second communication device that is remote from the communication device where the communication session includes a computer supported collaborative work environment utilizing a non-baton passing protocol, presenting content at a display device where the content is presented by the second communication device at a second display device, receiving first user input at the user interface where second user input is received by the second communication device where a conflict resolution is applied to events associated with the first and second user input, and presenting adjusted content at the display device. Other embodiments are disclosed.