Abstract:
Techniques for reconfiguring a second camera based on a first camera are provided. An event of interest is identified at a first camera using a first analytic. The event of interest occurring in a portion of a field of view of the first camera. A second camera whose field of view includes at least a portion of the event of interest in a field of view of the second camera is identified. It is determined that the second camera is equipped with a second analytic, the second analytic not currently operating on the at least a portion of the event of interest in the field of view of the second camera. The second camera is reconfigured to perform the second analytic on the at least the portion of the event of interest in the field of view of the second camera.
Abstract:
A method and apparatus are provided for synchronizing network traffic to a mobile device from each of multiple servers, wherein each such server can independently determine when to send traffic to the mobile device. More particularly, each of the multiple servers receives, from the mobile device, a value that uniquely identifies the mobile device from among multiple mobile devices. The server determines a time slot value based on the received value and assigns a time slot to the mobile device based on the determined time slot value. The server then transmits data to the mobile device in the assigned time slot. By each of the multiple servers determining the time slot value, and the assigned time slot, based on a same value received from the mobile device, the multiple servers are able to synchronize their transmissions to the mobile device without need of a common, intermediary, push notification service.
Abstract:
A mobile radio (MR) transmits short data during an active time division multiple access (TDMA) call in a wireless communication system. The mobile radio receives first communication media (CM) of the active call in a first slot of a first outbound TDMA logical channel (FLC) of an outbound traffic frequency having a slotting ratio n>=2. The MR transmits short data during at least a portion of a second slot of the FLC, pending short data on an inbound logical data channel of an inbound traffic frequency. The MR then receives second CM of the active call in a third slot of the FLC, and receives missed CM of the active call without specifically identifying the missed CM in any request for re-transmission of missed CM, in a first slot of a second outbound TDMA logical channel of the outbound traffic frequency.
Abstract:
A method and system that accounts for appearance changes in an object, attributable to object deformation or restoration, is disclosed. The system includes an object deformation prediction database. The object deformation prediction database is accessible as a function of the type of the object. The object deformation prediction database can identify one or more ways in which the type of object, and thus the object, is deformable to or restorable from a reference appearance that is depicted in a particular sub-region of an object.
Abstract:
A method and apparatus for notifying a user whether or not they are within a camera's field of view is provided herein. During operation equipment will receive a location of a user device. The equipment will also receive locations of cameras along with camera parameters. The equipment will determine whether or not the user device is within a field of view of a camera based on the location of the user device, the location of the cameras, and potentially the camera parameters. An indication of whether or not the device is within the field of view of a camera will be provided to a user.