Abstract:
A system includes an optical element configured to separate light into a first light beam and a second light beam, a first lens module configured to focus the first light beam, a second lens module configured to focus the second light beam, a first sensor having a first sensor size and configured to capture a first image from the first light beam focused by the first lens module onto the first sensor, a second sensor having a second sensor size different from the first sensor size and configured to capture a second image from the second light beam focused by the second lens module onto the second sensor, and one or more processors configured to modify the first image or the second image based on the first sensor size and the second sensor size to generate a modified image and generate a combined image based on the modified image.
Abstract:
A system includes an optical element configured to separate light into a first light beam and a second light beam, a first optical module configured to capture a first image having a first field of view from the first light beam, a second optical module configured to capture a second image having a second field of view different from the first field of view from the second light beam, and one or more processors configured to generate a scaled image by scaling one of the first image or the second image, and generate a combined image by fusing the scaled image and an unscaled one of the first image or the second image.
Abstract:
A method of image processing includes obtaining depth information respectively corresponding to one or more objects in an image frame captured by an imaging system based on spatial configuration of the imaging system, calculating one or more rendering parameters associated with one of the one or more objects in the image frame based on at least the depth information of the one or more objects, and rendering the image frame using the one or more rendering parameters to obtain a processed image frame. The processed image frame includes an in-focus region and an out-of-focus region relative to the one of the one or more objects.
Abstract:
A system for supporting imaging includes an imaging device configured to capture a plurality of images for a substantially same scene using respective imaging configurations, a stabilization device configured to stabilize the imaging device on a mobile platform during the capturing of the plurality of images, and a controller communicating with at least one of the imaging device or the stabilization device and configured to control an operation of the mobile platform.
Abstract:
System and method can support photography. A controller can configure a carrier to move an imaging device along a moving path. Furthermore, the controller can apply a time-dependent configuration on the imaging device, and use the imaging device for capturing a set of image frames along the moving path based on the one or more time-dependent parameters.