Abstract:
An imaging control device 100 includes a control communication unit 110 that communicates with a plurality of imaging devices and an overall control unit 101. The overall control unit 101 transmits an imaging preparation command to prepare imaging to each of the plurality of imaging devices 10 through the control communication unit 110 in response to an instruction received through an instruction receiving unit, receives preparation completion information indicating the completion of preparation for imaging from each of the plurality of imaging devices 10 through the control communication unit 110, and transmits a captured image acquisition command to acquire a captured image to each of the plurality of imaging devices 10 through the control communication unit 110 after receiving the preparation completion information from the plurality of imaging devices 10.
Abstract:
Provided are an imaging device operation device, an operation method, and a program that can simply and rapidly operate a pan/tilt mechanism such that an imaging unit is located at a desired position. A pan/tilt operation device includes a touch panel in which a touch centering detection region is set, predetermined pan angle rotation instruction regions are set on the left and right sides of the touch centering detection region, and predetermined tilt angle rotation instruction regions are set on the upper and lower sides of the touch centering detection region, a touch centering instruction unit, a predetermined pan angle rotation instruction unit that outputs an instruction to pan a pan/tilt mechanism at a predetermined pan angle, and a predetermined tilt angle rotation instruction unit that outputs an instruction to tilt the pan/tilt mechanism at a predetermined tilt angle.
Abstract:
A plurality of pixels 2 are arranged in a square lattice form, the color filters of RGB are arranged in a Bayer arrangement and a pair of a first phase difference detection pixel 3 which acquires a captured image signals for a right eye and a second phase difference detection pixel 4 which acquires a captured image signals for a left eye are provided on discrete and periodic positions in the square lattice form, the first phase difference detection pixel 3 is provided among the respective pixels of the square lattice form at 2n+1-pixel (n=1, 2, . . . ) intervals both in a horizontal direction and a vertical direction, and the second phase difference detection pixel 4 of the pair is provided on a pixel having the same color filter and spaced apart from the first phase difference detection pixel by two pixels.
Abstract:
A camera device according to an aspect of the invention includes an imaging unit, an imaging direction adjustment unit, a direction control unit that controls the imaging direction adjustment unit, a camera-side tracking processing unit that analyzes captured image data to acquire first target information indicating the position of a tracking target and outputs the first target information, a camera-side communication unit that receives second target information from a terminal device, and a camera-side target information correction unit that corrects the first target information on the basis of the second target information.
Abstract:
Provided are a content provision device, a content provision method, a program, and a recording medium capable of appropriately displaying content provided by reading a printed matter of an image acquired via a network. In the present invention, at least a part of a target image provided by a first user is set as a first image, content displayed on a display screen of a terminal of a second user is stored in association with the first image, data for printing is transmitted to the terminal, a read image is received from the terminal in a case in which a printed matter generated by printing a target image and a second image on a designated medium in accordance with the data for printing is read by the terminal, a storage destination is specified from a portion corresponding to the second image in the read image, and display data for displaying the content stored in the storage destination at a position in the display screen in accordance with a portion corresponding to the first image in the read image is transmitted to the terminal.
Abstract:
In one aspect of the present invention, when reset of a camera is received, a pan motor and a tilt motor of a pan and tilt mechanism are rotated in a first preset rotation direction, and the pan and tilt mechanism is first moved to a pan reference position and a tilt reference position. Thereafter, the pan motor and the tilt motor are rotated in a second rotation direction opposite to the first rotation direction, and the pan and tilt mechanism is moved to an initial pan position and an initial tilt position. Using a movement of the pan and tilt mechanism to initial pan and tilt positions, detection of a subject for automatic tracking is performed, and if the subject is detected, then transition to an automatic tracking state is caused to occur.
Abstract:
A projection display device includes: a light modulation unit that spatially modulates, in accordance with image data that has been input, light emitted by a light source; a projection optical system that projects the light that has been spatially modulated onto a projection surface of a vehicle; a measurement information acquisition unit that acquires measurement information measured by an information measuring device; an image display control unit that performs either first display control or second display control as defined herein; and a warning determination unit that determines, in accordance with the measurement information, whether or not a warning is necessary, and the image display control unit performs the second display control when the warning determination unit determines that the warning is necessary, and performs the first display control when the warning determination unit determines that the warning is not necessary.
Abstract:
A projection display device includes: a projection display unit that performs, in accordance with input image data, spatial modulation on light emitted by a light source, and projects image light obtained through the spatial modulation onto a projection surface of a vehicle to display an image that is based on the image data; an eye position detection unit that detects, in accordance with captured image data obtained by capturing an image of a driver of the vehicle by an imaging unit, positions of two eyes of the driver in the captured image data; and a control unit as defined herein.
Abstract:
A multi-imaging apparatus includes: a display unit; an internal imaging device that acquires a first live view image or a first image captured by a main imaging operation thereof; a wireless communication unit that performs wireless communication with an external imaging device that acquires a second live view image or a second image captured by a main imaging operation thereof; and a controller. Here, the controller receives an input of the first live view image from the internal imaging device, receives the second live view image from the external imaging device through the wireless communication unit, and causes the display unit to display the input first live view image and the received second live view image as a multi-live view.
Abstract:
An imaging device (pan/tilt camera) includes an imaging unit including an imaging lens and an imaging element, a pan/tilt mechanism that rotates the imaging unit in the horizontal direction and the vertical direction with respect to a camera body, an object detection unit that detects an object, which is a tracking target, from a moving image captured by the imaging unit, a pan/tilt control unit that controls the pan/tilt mechanism such that the object detected by the object detection unit is tracked, a motion sensor that detects a physical amount related to the movement of the camera body, and an operation control unit that stops the pan/tilt mechanism in a case in which the physical amount detected by the motion sensor is equal to or greater than a first threshold value.