Abstract:
An imaging control apparatus includes: a processor; and a radio communication unit capable of selecting a first transmission mode and a second transmission mode, the first transmission mode involving wireless data transmission to each of a plurality of imaging apparatuses with reception of a receipt acknowledgement from the imaging apparatuses, the second transmission mode involving simultaneous wireless data transmission to the imaging apparatuses without reception of the receipt acknowledgement from the imaging apparatuses. The processor performs a communication controlling step involving, in the case of instructing at least one simultaneous shooting process to the imaging apparatuses, separately transmitting each piece of shooting preparation instruction data instructing shooting preparation to each of the imaging apparatuses in the first transmission mode, and then simultaneously transmitting shooting instruction data to the imaging apparatuses in the second transmission mode.
Abstract:
A photographing device includes a photographing unit, a storage unit, a position obtaining unit, a position determining unit and a photographing control unit. The photographing unit photographs a subject and changes a photographing interval. In the storage unit, information of a designated position and a designated photographing interval that are related to each other are stored. The position obtaining unit obtains information of a present position. The position determining unit determines whether the present position is within an area including the designated position. The photographing control unit sets a photographing interval for the designated position and makes the photographing unit take photographs when the position determining unit determines that the present position is within an area including the designated position.
Abstract:
When interval capturing by an imaging section is performed, a CPU acquires a blur state at a capture timing from the detection result by an acceleration sensor, and performs pre-processing (camera-shake processing: trimming processing in consideration of a blur) on the captured image corresponding to the blur state. Also, when the blur is larger than a predetermined value, the CPU further performs post-processing (camera-shake processing: trimming processing in consideration of a blur) also on images captured at capture timings preceding to and subsequent to the capture timing for capturing the image based on the blur state (more specifically, processing lighter in load than the pre-processing at the capture timing).
Abstract:
The object of the present invention is to secure the identity of a file even if the file name has been changed. The image capture apparatus 1 includes: a captured image generation unit (81); a file name generation unit (82); and an image file generation unit (83). The captured image generation unit (81) generates data of a captured image and a normal file name of the file. The file name generation unit (82) generates a transfer destination file name corresponding to a predetermined transfer destination to which a file generated by the captured image generation unit (81) is transferred. The image file generation unit (83) adds a transfer destination file name generated by the file name generation unit (82) to the file as additional information and stores the file in the image file storage unit 62.
Abstract:
A receiver sets a storage capacity to be assigned for each connected digital camera based on the number of connected digital cameras, and allocates these storage capacities in a buffer. Also, the receiver sends a request for a through image for each frame to each of the connected digital cameras, receives through images transmitted in response to the requests, and stores the through images in areas of the buffer assigned for each of the digital cameras. Furthermore, after receiving the through image for one frame from each digital camera, the receiver performs image processing on each through image and causes these images to be displayed in a list form on one screen of the display section.
Abstract:
An image processing apparatus including a CPU which is operable to function as units comprising a processing unit which sets, as a first area, an area that is not a peripheral edge area in a captured image acquired by an imaging unit, sets an area including the peripheral edge area as a second area, and performs predetermined processing on one of the first area and the second area, and a specification unit which specifies whether the first area is subjected to the predetermined processing or the second area is subjected to the predetermined processing, based on orientation information of the imaging unit when the captured image is acquired.
Abstract:
A control apparatus to control a plurality of process executing apparatuses, the control apparatus including: a communication unit; and a processor. The processor transmits a request to execute predetermined processing common to the process executing apparatuses, a request to change to an energy saving mode, and a request to change to a normal mode, to each of the process executing apparatuses via the communication unit, and performs control of transmission of the request to execute the predetermined processing, the request to change to the energy saving mode, and the request to change to the normal mode, such that one of the process executing apparatuses executes the predetermined processing while a rest of the process executing apparatuses is in the energy saving mode, and such that all the process executing apparatuses execute the predetermined processing in sequence.