Abstract:
A system for providing awareness of an interactive surface is disclosed. The system may include a processor that is communicatively linked to an interactive surface. The processor may determine a position and a velocity of an object that is within range of the interactive surface based on one or more of media content, vibrations, air movement, sounds and, global positioning data associated with the object. Additionally, the processor may determine if the object has a trajectory that would cause the object to collide with the interactive surface based on the information associated with the object. If the processor determines that the object has a trajectory that would cause the object to collide with the interactive surface, the processor can generate a notification.
Abstract:
A method and system for programming a universal remote control (URC) to operate with a remote-controlled device is disclosed. Programming codes for the remote-controlled device may be transferred from an original remote control using a programming interface. The transfer may be performed directly with the URC. The transfer may also be performed using consumer-premises equipment of a multimedia content distribution network. The URC may be configured to use at least one of the programming codes to remotely control the remote-controlled device.
Abstract:
A method includes receiving, at a media device, media content from a media content server. A portion of the media content includes a first item concurrently depicted with a second item. The method includes receiving an input indicating a selection of the second item within the media content. The method includes, in response to the input, sending an identification request for information corresponding to the second item to an identification server in response to the input. The identification request includes data relating to a depiction of the second item. The method also includes receiving the information from the identification server in response to the identification request. Other embodiments are disclosed.
Abstract:
A method includes receiving, at a media device, media content from a media content server. A portion of the media content includes a first item concurrently depicted with a second item. The method includes receiving an input indicating a selection of the second item within the media content. The method includes, in response to the input, sending an identification request for information corresponding to the second item to an identification server in response to the input. The identification request includes data relating to a depiction of the second item. The method also includes receiving the information from the identification server in response to the identification request. Other embodiments are disclosed.
Abstract:
In embodiments of the disclosed technology, a plurality of ratings of websites is received, wherein each rating is associated with a category and a rater and each rater is associated with at least one group. A selection of a category is received from the user, wherein the user is associated with at least one group. One website location (or a plurality of website locations) is provided in the category to the user based on at least one rating of the plurality of ratings provided by at least one of the raters, wherein at least one group associated with the rater and at least one the group associated with the user are the same group.
Abstract:
Alerts are processed based on social networks. A person's contact information, as an example, may be associated with a social network. Each different social network may also have its own custom ringtone or other alert. Calls, texts, and other electronic messages may thus processed with the alert of the social network.
Abstract:
A multimedia processing resource (MPR) includes interactive voice response capabilities. A user may control MPR commands and functions over a telephone interface. For example, through a telephone connection a user may receive a listing of electronic programming guide data, may schedule a multimedia program for recording, or may receive a report related to a multimedia program that is viewed at the present time.
Abstract:
A system for providing awareness of an interactive surface is disclosed. The system may include a processor that is communicatively linked to an interactive surface. The processor may determine a position and a velocity of an object that is within range of the interactive surface based on one or more of media content, vibrations, air movement, sounds and, global positioning data associated with the object. Additionally, the processor may determine if the object has a trajectory that would cause the object to collide with the interactive surface based on the information associated with the object. If the processor determines that the object has a trajectory that would cause the object to collide with the interactive surface, the processor can generate a notification.
Abstract:
A system for providing awareness of an interactive surface is disclosed. The system may include a processor that is communicatively linked to an interactive surface. The processor may determine a position and a velocity of an object that is within range of the interactive surface based on one or more of media content, vibrations, air movement, sounds and, global positioning data associated with the object. Additionally, the processor may determine if the object has a trajectory that would cause the object to collide with the interactive surface based on the information associated with the object. If the processor determines that the object has a trajectory that would cause the object to collide with the interactive surface, the processor can generate a notification.
Abstract:
A method includes receiving, at a first communication device, signals from communication devices. Each signal of the signals includes information associated with a particular communication device of the communication devices. The information includes location coordinates of a corresponding communication device of the communication devices. The method includes determining, at the first communication device, a characteristic associated with each signal of the signals. The method also includes determining, at the first communication device, estimated location coordinates of the first communication device based on the location coordinates and based on characteristics associated with the signals.