Abstract:
The image blur correction device includes an acceleration sensor, an angular velocity sensor, and a system control unit. The system control unit selects one of rotation axes based on a usage state of a digital camera, and calculates a shift blur amount generated in a direction by rotation of the digital camera around a second axis and a shift blur amount generated in a direction by rotation of the digital camera around a first axis based on distances from the selected rotation axis to the acceleration sensor, angular velocities, and accelerations.
Abstract:
An image capturing device includes: an imaging lens; an image capturing device main body including an imaging element that captures an optical image transmitting through the imaging lens; a first correction unit that performs correction of an image shake by a correction lens; and a second correction unit that performs correction of the image shake by the image capturing device main body. The image capturing device performs a control of causing the first correction unit and the second correction unit to share and correct the image shake and calculates a correction amount of each of the first correction unit and the second correction unit according to at least one of a temperature of the imaging lens or a temperature of the image capturing device main body in a case where correction of the image shake is performed by the first correction unit and the second correction unit.
Abstract:
An imaging apparatus includes: an imager that has a plurality of pixels as defined herein, that includes a plurality of pixel rows including the plurality of pixels arranged in one direction, and that discharges charges of the photoelectric conversion element and the charge holder to a charge discharge region of the readout circuit as defined herein; and an imaging controller that performs a global reset drive, a global shutter drive, a first rolling readout drive, a rolling shutter drive and a second rolling readout drive as defined herein, and the imaging controller performs a first imaging control as defined herein.
Abstract:
In an aspect of the invention, first and second images having parallax are acquired by an imaging unit (202) including a first imaging part (202A) and a second imaging part (202B), and an angle between an imaging direction of the imaging unit (202) and a normal direction of a flat surface of an object to be inspected having the flat surface is calculated on the basis of the acquired first and second images. The pan/tilt of the imaging unit (202) are controlled by a pan/tilt control unit (210), but images for inspection showing the object to be inspected are taken and acquired by the imaging unit in a case in which the calculated angle is controlled to an angle within an allowable angle range.
Abstract:
A live view control device according to an aspect of the present invention includes a display control unit that displays each of a plurality of live view images received from a plurality of imaging devices in each of a plurality of areas of a display screen, a priority setting unit that sets a priority of the plurality of live view images, a transfer condition setting unit that sets transfer conditions including at least one of a frame rate of transfer and an image size of the transfer of the plurality of live view images on the basis of the priority of the plurality of live view images, and a communication control unit that transmits a transfer instruction for a live view image according to the set transfer conditions to the plurality of imaging devices via the wireless communication unit.
Abstract:
In an aspect of the present invention, assignment and a rotation direction of a pan motor and a tilt motor of each key of a cross key are set on the basis of the installation posture of the camera. Accordingly, it is possible to operate the cross key without discomfort when the camera is caused to perform a pan operation or a tilt operation using the cross key. Further, if the camera is caused to perform the pan operation using the cross key and a specific condition under which a video rotates is discriminated from a tilt angle, a display of a corresponding icon of the cross key is switched from a first icon indicating an up and down direction or a left and right direction to a second icon indicating a rotation direction. Accordingly, it is possible not to cause discomfort even when a video rotates.
Abstract:
An image captured using a lens mounted via a mount adapter is corrected in simple fashion in accordance with the lens. An interchangeable lens is mounted on a camera body via the mount adapter. The mount adapter is provided with a slide switch capable of setting a lens type that corresponds to the interchangeable lens. The slide switch is positioned in accordance with the interchangeable lens. The switch setting state of the positioned slide switch is detected in the camera body. Correction parameters that conform to the detected switch setting state are read out of a memory within the camera body. The captured image is corrected using the correction parameters that have been read out.
Abstract:
An information processing apparatus generates a virtual viewpoint video based on a virtual viewpoint by using a motion picture obtained by imaging an imaging region with a plurality of imaging devices. The information processing apparatus displays, on a display, a standard image corresponding to the imaging region, a plurality of virtual viewpoint paths disposed in the standard image and representing a trajectory of movement of the virtual viewpoint, an indicator indicating a reproduction position of the virtual viewpoint video, and a reference image based on a virtual viewpoint image viewed from the virtual viewpoint corresponding to the reproduction position of the virtual viewpoint path among a plurality of virtual viewpoint images configuring the virtual viewpoint video.
Abstract:
An image capturing device includes: an imaging lens; an image capturing device main body including an imaging element that captures an optical image transmitting through the imaging lens; a first correction unit that performs correction of an image shake by a correction lens; and a second correction unit that performs correction of the image shake by the image capturing device main body. The image capturing device performs a control of causing the first correction unit and the second correction unit to share and correct the image shake and calculates a correction amount of each of the first correction unit and the second correction unit according to at least one of a temperature of the imaging lens or a temperature of the image capturing device main body in a case where correction of the image shake is performed by the first correction unit and the second correction unit.
Abstract:
The image blur correction device includes an acceleration sensor, an angular velocity sensor, and a system control unit. The system control unit selects one of rotation axes based on a usage state of a digital camera, and calculates a shift blur amount generated in a direction by rotation of the digital camera around a second axis and a shift blur amount generated in a direction by rotation of the digital camera around a first axis based on distances from the selected rotation axis to the acceleration sensor, angular velocities, and accelerations.