Abstract:
A method, apparatus, and system for detection of a network are described. A network list indicating a plurality of network identifiers associated with a mobile device is determined. Each network identifier identifies one or more access points for a respective wireless network. Locality information is determined based on one or more sensors of the mobile device. At least one of the plurality of network identifiers is selected based on the locality information. And a transmission of the selected network identifiers by the mobile device is initiated.
Abstract:
A method, performed by one or more computer devices, may include generating a sequence script for a venue event, wherein the sequence script is configured to synchronize a plurality of user devices located at the venue during the venue event to form one or more images discernable when the devices are viewed collectively. The method may further include obtaining user registration information associated with the venue event, wherein the user registration information identifies user devices registered to participate in the generation of the one or more images; detecting a trigger event associated with the sequence script; and orchestrating the plurality of user devices to form the one or more images, in response to detecting the trigger event.
Abstract:
A network device receives, from multiple smart cameras located at different road segments of multiple real-world road segments, first data describing a location and configuration of each of the multiple real-world road segments, and second data describing movement of one or more objects at each of the multiple real-world road segments. The network device generates multiple virtual road segments based on the first data, wherein each of the multiple virtual road segments describes one of the multiple real-world road segments; and uses a physics engine to simulate, based on the generated multiple virtual road segments and the second data, movement of vehicles or pedestrians through the multiple real-world road segments to analyze traffic characteristics, trends or events. The network device generates road segment alterations for reconfiguring one or more of the multiple real-world road segments based on the analysis of the traffic characteristics, trends, or events.
Abstract:
A system may receive a beacon identifier. The system may translate the beacon identifier to a virtual beacon identifier. The virtual beacon identifier may be associated with an entity. The system may determine message information based on the virtual beacon identifier. The message information may include information associated with a message to be provided for display to a user and may be associated with the entity. The system may provide, for display to the user, the message associated with the message information.
Abstract:
A device can receive data related to a roadway. The data can include video data of the roadway. The device can determine a pixel area of objects shown in the video data. The device can determine that a vehicle and an individual are associated with the roadway at a same time. The device can determine a protective zone around the individual based on a first pixel area of the individual. The protective zone can be associated with detecting a potential collision between the vehicle and the individual. The device can determine a first location and movement of the vehicle relative to a second location and movement of the individual. The device can predict that a second pixel area of the vehicle is to intersect the protective zone of the individual. The device can detect the potential collision. The device can perform one or more actions.
Abstract:
A system may receive a beacon identifier. The system may translate the beacon identifier to a virtual beacon identifier. The virtual beacon identifier may be associated with an entity. The system may determine message information based on the virtual beacon identifier. The message information may include information associated with a message to be provided for display to a user and may be associated with the entity. The system may provide, for display to the user, the message associated with the message information.
Abstract:
A network device receives, from multiple smart cameras located at different road segments of multiple real-world road segments, first data describing a location and configuration of each of the multiple real-world road segments, and second data describing movement of one or more objects at each of the multiple real-world road segments. The network device generates multiple virtual road segments based on the first data, wherein each of the multiple virtual road segments describes one of the multiple real-world road segments; and uses a physics engine to simulate, based on the generated multiple virtual road segments and the second data, movement of vehicles or pedestrians through the multiple real-world road segments to analyze traffic characteristics, trends or events. The network device generates road segment alterations for reconfiguring one or more of the multiple real-world road segments based on the analysis of the traffic characteristics, trends, or events.
Abstract:
An approach for handling undesired communication at a mobile device is disclosed. A call scoring platform detects a request for delivery of a communication from an originator to a recipient. The call scoring platform then collects data feeds from data sources associated with the communication, the originator, the recipient, or a combination thereof and based on the data feeds, a score is computed for the communication, the originator, or a combination thereof. Further, based on the computed score filtering and/or blocking of delivery of the communication to the recipient is initiated. In addition, the call scoring platform creates a personal scoring system for one or more users wherein the users may assign scores for an incoming communication.
Abstract:
A method, performed by one or more computer devices, may include generating a sequence script for a venue event, wherein the sequence script is configured to synchronize a plurality of user devices located at the venue during the venue event to form one or more images discernable when the devices are viewed collectively. The method may further include obtaining user registration information associated with the venue event, wherein the user registration information identifies user devices registered to participate in the generation of the one or more images; detecting a trigger event associated with the sequence script; and orchestrating the plurality of user devices to form the one or more images, in response to detecting the trigger event.