Abstract:
A system and method of preparing images captured by a lifelog camera for efficient transfer from the camera to another device. The lifelog camera generates a corresponding thumbnail for each image that it captures, and an automated analysis engine analyzes the thumbnails for interestingness and, in some cases, for similarity.
Abstract:
This disclosure concerns wearable and/or handheld mobile electronic devices and methods for directional proximity detection of other wearable and/or handheld mobile electronic devices. A first wearable and/or handheld mobile electronic device (1) for directional proximity detection comprises a signal transceiver configured for wireless communication, and a control unit for the wireless communication. The control unit is operatively connected to the signal transceiver and configured to receive at least one wireless signal from a second wearable and/or handheld mobile electronic device (2), calculate spatial information regarding the second wearable and/or handheld mobile electronic device by means of the signal/-s transmitted from the second wearable and/or handheld mobile electronic device to the first wearable and/or handheld mobile electronic device, and configure a notification for the user of the first wearable and/or handheld mobile electronic device based on at least the spatial information regarding the second wearable and/or handheld mobile electronic device.
Abstract:
A digital photograph is processed by receiving a communication related to the digital photograph from an application external to an image storage device that stores the digital photograph. Parameters related to the application are processed. The digital photograph is changed based on the parameters related to the application. Related methods, devices, and/or computer program products are described.
Abstract:
A system and method of preparing images captured by a lifelog camera for efficient transfer from the camera to another device. The lifelog camera generates a corresponding thumbnail for each image that it captures, and an automated analysis engine analyzes the thumbnails for interestingness and, in some cases, for similarity.
Abstract:
An electronic device comprises a display to output a video, a user interface for controlling a navigation in the video along a time axis, and a processing device. The processing device is configured, when operating in an operating mode in which an object shown in a plurality of frames of the video is selected by a user input, to determine a magnitude of a speed vector of the object, and to apply a time scaling factor which depends on the determined magnitude of the speed vector of the object to the navigation along the time axis.
Abstract:
An electronic device comprises a display to output a video, a user interface for controlling a navigation in the video along a time axis, and a processing device. The processing device is configured, when operating in an operating mode in which an object shown in a plurality of frames of the video is selected by a user input, to determine a magnitude of a speed vector of the object, and to apply a time scaling factor which depends on the determined magnitude of the speed vector of the object to the navigation along the time axis.