Abstract:
Provided are an imaging device, an imaging method, and an imaging program capable of easily acquiring a slow moving image with good image quality. In one aspect of the present invention, an imaging device includes an optical system, an imaging element, and a processor, and the processor performs detection processing of detecting a movement of a subject based on an image signal output from the imaging element, frame rate control of increasing a frame rate of a moving image output from the imaging element based on the detected movement, exposure control processing of maintaining a rate of an exposure time per frame of the moving image constant according to the increase in the frame rate, and dimming control processing of changing a degree of dimming of the optical system according to the exposure control processing.
Abstract:
An image processing device includes an image generation device, a first display device and a second display device, and a display control device, wherein the image generation device generates the first display image and the second display image such that the first display image and the second display image are different in at least any one of decimation ratio, enlargement ratio and reduction ratio of the first display image and the second display image, and the image generation device makes the first display device and the second display device different in at least any one of pixels that are of the first pixel group and the second pixel group and that are used in the generation of the second display image, the enlargement ratio and the reduction ratio of the second display image, and a pixel region in which the second display image is displayed.
Abstract:
Provided are an imaging device, an imaging method, and a program capable of changing assignment of functions to a plurality of operation units according to a use environment of the imaging device. An imaging device (1) includes: a plurality of operation units (265) provided on a plurality of surfaces of a device main body (101), respectively, and capable of being assigned functions; a memory (267) that stores assignment information indicating a relationship between a use environment and assignment of the functions to the plurality of operation units (265); and a processor (301), in which the processor (301) performs use environment determination processing of determining the use environment of the imaging device, and assignment setting processing of setting the assignment of the functions to the plurality of operation units on the basis of the assignment information of the memory, according to a result of the use environment determination processing.
Abstract:
An imaging apparatus includes an image sensor and a processor. The processor performs demosaicing processing on captured image data obtained by being imaged by the image sensor, acquires distance data representing a distance between the imaging apparatus and a subject for each of a plurality of pixels included in a captured image represented based on the captured image data, specifies a correction target pixel from among the plurality of pixels based on the distance data, and performs correction processing of correcting a false signal generated by the demosaicing processing, on correction target pixel data of the correction target pixel.
Abstract:
There is provided an imaging apparatus including an image sensor, and a processor, in which the processor is configured to detect a focus region within an imaging area based on imaging data obtained by the image sensor, generate moving image data based on the imaging data obtained by the image sensor, generate information image data representing information related to the moving image data, output the moving image data and the information image data, which is associated with a window region in an image represented by the moving image data, and control a position of the window region according to the focus region.
Abstract:
There is provided an imaging apparatus including an image sensor, and a processor, in which the processor is configured to acquire information related to distances at a plurality of positions within an imaging area of the image sensor, generate moving image data represented with a vertical axis and a lateral axis, based on imaging data obtained by the image sensor, generate distance image data in which a first axis corresponds to the vertical axis or the lateral axis and a second axis represents the information related to the distance, and output the moving image data and the distance image data.
Abstract:
An obstacle determining unit obtains predetermined index values for each of subranges of each imaging range of each imaging unit, compares the index values of the subranges at mutually corresponding positions in the imaging ranges of the different imaging units, and if a difference between the index values in the imaging ranges of the different imaging units is large enough to satisfy a predetermined criterion, determines that the imaging range of at least one of the imaging units contains an obstacle that is close to the imaging optical system of the at least one of the imaging units.
Abstract:
Provided are an imaging device, an imaging instruction method, and an imaging instruction program capable of efficiently changing an imaging condition during capturing of a moving image. In one aspect of the present invention, an imaging device is an imaging device including an imaging unit that captures a moving image and a processor. The processor receives a first operation by a user of causing the imaging unit to start capturing of a first moving image based on a first imaging parameter and of issuing an instruction to set a second imaging parameter different from the first imaging parameter during the capturing of the first moving image, receives a second operation by the user of causing the imaging unit to start capturing of a second moving image based on the second imaging parameter after the reception of the first operation, causes the imaging unit to capture the first moving image until a third instruction to end the capturing of the first moving image is received in a case where the second operation is received, and causes the imaging unit to end the capturing of the first moving image in a case where the third instruction is received.
Abstract:
There is provided an imaging apparatus including an image sensor and a processor, in which the processor acquires distance data related to distances between the imaging apparatus and a plurality of subjects within an imaging area imaged by the image sensor, generates boundary data indicating a region of a boundary subject that is present at a distance of a boundary portion of a depth of field among the plurality of subjects, based on the distance data, generates moving image data including the boundary data based on image data obtained by imaging with the image sensor, and outputs the moving image data.
Abstract:
Provided is an imaging apparatus capable of continuously imaging a natural video even though brightness is changed. In an imaging apparatus in which an exposure condition is set based on a characteristic of a transmittance control element, a first exposure condition range is calculated based on photometry of the imaging apparatus. Determination is made whether or not the calculated first exposure condition range is included in a second exposure condition range where a control range acquired by the transmittance control element is applicable. In a case where the calculated first exposure condition range is not included in the second exposure condition range, the exposure condition of the imaging apparatus is changed such that the first exposure condition range is included in the second exposure condition range.