Patent classifications
G01C3/14
OPEN VIEW, MULTI-MODAL, CALIBRATED DIGITAL LOUPE WITH DEPTH SENSING
A digital loupe system is provided which can include a number of features. In one embodiment, the digital loupe system can include a stereo camera pair and a distance sensor. The system can further include a processor configured to perform a transformation to image signals from the stereo camera pair based on a distance measurement from the distance sensor and from camera calibration information. In some examples, the system can use the depth information and the calibration information to correct for parallax between the cameras to provide a multi-channel image. Ergonomic head mounting systems are also provided. In some implementations, the head mounting systems can be configurable to support the weight of a digital loupe system, including placing one or two oculars in a line of sight with an eye of a user, while improving overall ergonomics, including peripheral vision, comfort, stability, and adjustability. Methods of use are also provided.
OPEN VIEW, MULTI-MODAL, CALIBRATED DIGITAL LOUPE WITH DEPTH SENSING
A digital loupe system is provided which can include a number of features. In one embodiment, the digital loupe system can include a stereo camera pair and a distance sensor. The system can further include a processor configured to perform a transformation to image signals from the stereo camera pair based on a distance measurement from the distance sensor and from camera calibration information. In some examples, the system can use the depth information and the calibration information to correct for parallax between the cameras to provide a multi-channel image. Ergonomic head mounting systems are also provided. In some implementations, the head mounting systems can be configurable to support the weight of a digital loupe system, including placing one or two oculars in a line of sight with an eye of a user, while improving overall ergonomics, including peripheral vision, comfort, stability, and adjustability. Methods of use are also provided.
IMAGE PROCESSING APPARATUS, IMAGE PROCESSING METHOD, AND PROGRAM
An image processing apparatus inputs image data representing a plurality of images from mutually different viewpoints, estimates first information indicating a disparity between the plurality of images by comparing image regions each having a first size between the plurality of images, and identifies image regions each having a second size different from the first size, between the plurality of images, based on the first information estimated. The estimation estimates second information indicating the magnitude of a disparity between the plurality of images in the identified image regions by comparing the image regions each having the second size between the plurality of images.
Point cloud data processing device
According to one embodiment, a point cloud data processing device includes a communication interface and a processor. The communication interface acquires distance data from a distance sensor. The processor generates second point cloud data by employing one point for each unit cell preset for coordinates of first point cloud data based on the distance data.
Transprojection of geometry data
Systems and methods for transprojection of geometry data acquired by a coordinate measuring machine (CMM). The CMM acquires geometry data corresponding to 3D coordinate measurements collected by a measuring probe that are transformed into scaled 2D data that is transprojected upon various digital object image views captured by a camera. The transprojection process can utilize stored image and coordinate information or perform live transprojection viewing capabilities in both still image and video modes.
ELECTRONIC DEVICE AND CONTROL METHOD
An electronic device includes at least one processor or circuit configured to function as a setting unit, an acquisition unit and a processing unit. The setting unit sets an object region in an image acquired from an imaging unit. The acquisition unit acquires a distance map including distance information corresponding to a pixel included in the object region. The processing unit determines object distance information indicating a distance to an object included in the object region, based on the distance information corresponding to the pixel included in the object region.
OPEN VIEW, MULTI-MODAL, CALIBRATED DIGITAL LOUPE WITH DEPTH SENSING
A digital loupe system is provided which can include a number of features. In one embodiment, the digital loupe system can include a stereo camera pair and a distance sensor. The system can further include a processor configured to perform a transformation to image signals from the stereo camera pair based on a distance measurement from the distance sensor and from camera calibration information. In some examples, the system can use the depth information and the calibration information to correct for parallax between the cameras to provide a multi-channel image. Ergonomic head mounting systems are also provided. In some implementations, the head mounting systems can be configurable to support the weight of a digital loupe system, including placing one or two oculars in a line of sight with an eye of a user, while improving overall ergonomics, including peripheral vision, comfort, stability, and adjustability. Methods of use are also provided.
OPEN VIEW, MULTI-MODAL, CALIBRATED DIGITAL LOUPE WITH DEPTH SENSING
A digital loupe system is provided which can include a number of features. In one embodiment, the digital loupe system can include a stereo camera pair and a distance sensor. The system can further include a processor configured to perform a transformation to image signals from the stereo camera pair based on a distance measurement from the distance sensor and from camera calibration information. In some examples, the system can use the depth information and the calibration information to correct for parallax between the cameras to provide a multi-channel image. Ergonomic head mounting systems are also provided. In some implementations, the head mounting systems can be configurable to support the weight of a digital loupe system, including placing one or two oculars in a line of sight with an eye of a user, while improving overall ergonomics, including peripheral vision, comfort, stability, and adjustability. Methods of use are also provided.
Mobile terminal with distal lenses and method of using mobile terminal to determine distance, range and dimension of an object
A mobile terminal is provided that includes a camera configured to capture an image. The mobile terminal also has at least one distal lens disposed remotely from the camera, and a connector connecting the at least one distal lens to the camera. The connector is configured to direct light from the at least one distal lens to the camera. In particular, the connector is arranged to allow the at least one distal lens to move independently with respect to the camera.
Mobile terminal with distal lenses and method of using mobile terminal to determine distance, range and dimension of an object
A mobile terminal is provided that includes a camera configured to capture an image. The mobile terminal also has at least one distal lens disposed remotely from the camera, and a connector connecting the at least one distal lens to the camera. The connector is configured to direct light from the at least one distal lens to the camera. In particular, the connector is arranged to allow the at least one distal lens to move independently with respect to the camera.