Abstract:
A camera apparatus on an imaging terminal side detects the installation state (imaging state) of its own camera based on sensor information obtained by an imaging state sensor of the camera, and specifies the state as an imaging condition thereof. Then, the camera apparatus refers to a task table and thereby specifies a camera task associated with the installation state (imaging state) which is the imaging condition as a task of its own camera.
Abstract:
A moving device includes an imaging unit, an acquiring unit, a determining unit and an imaging control unit. The acquiring unit is configured to acquire a state at a time when the moving device is released from a user. The determining unit is configured to determine an imaging manner to control the imaging unit after the time of being released, based on the state acquired by the acquiring unit. The imaging control unit is configured to control the imaging unit in the imaging manner determined by the determining unit.
Abstract:
A flying device includes a propulsion unit, a distance sensor, a controller, a determiner and a control modifier. The propulsion unit enables the flying device to fly in air. The distance sensor determines a distance from the flying device to a reference plane. The controller controls an altitude of the flying device based on a value output from the distance sensor. The determiner determines occurrence of an environmental change due to a shift of the reference plane. The control modifier modifies control of the controller in a case in which the determiner determines the occurrence of the environmental change.
Abstract:
An image capture apparatus including a timing generator that generates a frame synchronization signal with a constant cycle receives a reference signal generated at a predetermined interval based on a predetermined reference cycle, compares generation timing of the reference signal received with generation timing of the frame synchronization signal generated by the timing generator, and adjusts a generation cycle of the frame synchronization signal generated by the timing generator based on a result of the comparison.
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.
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:
A camera is provided with an imaging element, and detects a timing of blinking of light which blinks periodically at a reference timing, based on a timing of variation in luminance of an image obtained by the imaging element, wherein the image is taken by the imaging element under a condition that the light blinks periodically at the reference timing. Further, the timing of exposure of the imaging element is adjusted based on the detected timing of the blinking light, thereby synchronizing shooting operations of plural cameras with each other.