Abstract:
A moving image generation system includes: acquiring a plurality of moving images acquired by performing continuous photography by a plurality of image capture units that is disposed so as to differentiate their photographing areas; detecting, by way of image recognition, from within each moving image acquired, a subject arbitrarily designated; according to each timing in the continuous photography, selects a moving image including a subject-included area in which the subject detected is included at a predetermined position or in a predetermined size, and clips an image within the subject-included area; and couples the plurality of images that is clipped in the order of photographing time to generate a single moving image.
Abstract:
An image processing device includes a data transmitter/receiver and at least one processor. The processor obtains first data of a continuous first image, obtains performance information of a display of a first external device that displays a second image based on the first image, generates, from the first data, second data of the second image in accordance with the performance information, and outputs the second data to the first external device through the data transmitter/receiver.
Abstract:
A moving image generation system includes a plurality of image capture apparatuses respectively having an image capture unit and a CPU. The CPU is configured to sequentially select an image capture apparatus of which photographing area includes a subject according to each timing in photography among the plurality of the image capture apparatus that is disposed so as to differentiate their photographing areas; detect the subject from a plurality of moving images acquired by performing the photography by the image capture unit sequentially selected; according to each timing in the photography, select a moving image including a subject-included area that is a partial image area in which the detected subject is included at a predetermined position or in a predetermined size, among the acquired plurality of moving images, and execute selective clipping processing that clips an image within the subject-included area from the moving images thus selected; and transmit each of the images that is selectively clipped according to each timing in the photography to an external apparatus.
Abstract:
An image processing device executes: a determination process of determining similarity of a motion of a subject in each of a plurality of pieces of moving image data stored in the storing unit; a selection process of selecting a specific piece of moving image data from among the pieces of moving image data on the basis of the similarity determined by the determination step; and an output process of outputting information of a selection result by the selection step.
Abstract:
An information processing device includes a microphone that acquires a speech signal, and at least one processor. In a case in which the processor determines a wake word is included in first recognition data derived from the speech signal, when the processor determines that control information, that is information related to a control processing, is included in second recognition data derived from the speech signal after the wake word, the processor executes a first control processing corresponding to the control information. When the processor determines that the control information is included in third recognition data derived from the speech signal acquired by the microphone during a first period after a predetermined condition related to an event that occurs after the wake word is satisfied or during execution of the first control processing, the processor executes a second control processing corresponding to the control information included in the third recognition data.
Abstract:
A master camera sets temporary conditions at the time of executing photographing by a plurality of cameras, determines whether photographing by the plurality of cameras can be executed under the temporary conditions, sets actual conditions at the time of executing photographing by the plurality of cameras in accordance with this determination result, and executes control such that photographing by the plurality of cameras is executed under the actual conditions.
Abstract:
FIG. 2C depicts a live view screen when a movement is made in a direction of approaching the camera position at the time of pre-photographing (frontward direction) and also in the right direction in the drawing. When the camera position is changed, the display state of a provisional subject image in the live view screen is changed according to the change. In this case, the display size of the provisional subject image is changed according to the movement distance of the camera position in the frontward direction and the display position of the provisional subject image is changed in the left direction according to the movement distance in the right direction.
Abstract:
An imaging apparatus of the present invention, which is capable of wireless communication, images a peripheral imaging apparatus from among a plurality of peripheral imaging apparatuses around the imaging apparatus; detects predetermined information by which identification information identifying the peripheral imaging apparatus is identifiable from within the imaging frames; identifies the identification information by analyzing the detected predetermined information; selects a peripheral imaging apparatus to be a target for predetermined processing from among the plurality of peripheral imaging apparatus by using the identified identification information; and performs the predetermined processing with the selected peripheral imaging apparatus via the wireless communication.