Abstract:
An image processing device includes a reference camera determiner that determines one among the multiple cameras, as a reference camera; an imaging condition acquisition unit that acquires imaging conditions relating to exposure and white balance which are set in the reference camera; an imaging condition setter that sends a command to set the imaging conditions relating to the exposure and the white balance, based on the imaging conditions in the reference camera, to cameras other than the reference camera; and an image composition unit that performs image composition processing on the multiple captured images that are acquired from the multiple cameras and that outputs the panoramic composite image. Thus, a boundary of an area of each composed image in the panoramic composite image that results from the composition is suppressed from being unnaturally conspicuous, and the captured image that is a reference is suitably displayed.
Abstract:
A video display method for a video display device is provided. The video display method comprises: acquiring a plurality of captured images from each of a plurality of cameras for each frame; generating a plurality of correction images from the plurality of captured images by performing parallax correction in each of the plurality of captured images for each frame, the parallax correction being performed between images captured by adjacent cameras; and compositing the plurality of correction images to generate a 360° panoramic composite image for each frame. An amount of the parallax correction of each captured image in each frame is limited so that an amount of change from a previous amount of the parallax correction in a previous frame is within a range defined by a predetermined limitation value.
Abstract:
The present disclosure provides a food management system that can accurately manage a food item contained in a refrigerator. A food management system is configured to manage a food item contained in a refrigerator including a refrigerator compartment and includes a refrigerator compartment camera 21 and a drawer camera 22 configured to capture a moving image, and a food detection unit 221D configured to detect a food item taken into or out of the refrigerator based on the moving image obtained by the image capturing with the refrigerator compartment camera 21 and the drawer camera 22.
Abstract:
The present disclosure provides a food detection device 2 that can accurately detect, with a camera, a food item taken into or out of a refrigerator 1. The food detection device 2 is attached to an upper part of the refrigerator 1 by a user P and configured to detect, with a refrigerator compartment camera 21 and a drawer camera 22, a food item taken into or out of the refrigerator 1 and includes a camera module 220 including the refrigerator compartment camera 21 and the drawer camera 22 configured to capture an image of the refrigerator 1 from an upper front of the refrigerator 1, and an electric power supply unit 230 configured to supply electric power at least to the camera module 220.
Abstract:
A generator generates attribute information regarding a video image, which is captured by an imaging unit by capturing a plurality of capture directions, on a predetermined unit of video content. A composition map generator extracts a predetermined object, based on the attribute information of the video images captured in the plurality of capture directions within a predetermined period, and generates a composition map indicating a position of the extracted object. A comparator determines priority orders in the respective pieces of shooting of the respective capture directions based on a comparison result obtained by comparing pieces of the attribute information, for each of the capture directions and based on the attribute information included in the composition map. A camera work controller determines a next capture direction based on the priority orders, and controls operations of the imaging unit and a camera pantilter based on the determined capture direction.