Abstract:
The present invention is to realize a simple communication connection. A shooting system S includes: a display device 2 configured to change identifiers periodically so as to present an identifier; a management server 1 configured to share the identifier with the display device 2; and a user terminal 4 configured to acquire the identifier presented on the display device 2 when an identifier acquisition operation by a user is detected, and to transmit, to the management server 1, the acquired identifier and an operation instruction to operate a camera 3 identified by the acquired identifier. The management server 1 includes an information control block 114 which performs control to associate image data acquired with the camera 3 based on the operation instruction transmitted by the user terminal 4 with the identifier presented on the display device 2 when the identifier acquisition operation by the user is detected.
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:
It is possible to perform synchronous photographing promptly and reliably using a plurality of image capture apparatuses. The synchronous communication start processing unit or the test shutter processing unit causes a plurality of image capture apparatuses to perform a rehearsal operation of the synchronous photographing to acquire result information relating to a result from the rehearsal operation from each of the plurality of the image capture apparatuses. The live shutter processing unit determines a photographing condition when performing an actual operation of synchronous photographing, based on the result information acquired from each of the image capture apparatuses by way of the synchronous communication start processing unit or the test shutter processing unit. The live shutter processing unit causes the plurality of the image capture apparatuses to perform the synchronous photographing based on the photographing condition determined by the live shutter processing unit.
Abstract:
In the present invention, a control section distinctly displays, as indexes for indicating that data (image) switching can be performed from a starting point that is the arrayed position of data selected as a display target from among a plurality of data arrayed in virtual and multiple dimensions based on plural types of imaging parameters, information regarding the array status of the plurality of data on a display section, in association with plural directions in which data switching can be performed. As a result of this configuration, when instructing to perform data switching in a direction arbitrarily selected from among a plurality of data switching directions, the user can instruct to perform data switching while visually checking information regarding the array status of data for each data switching direction. That is, by this configuration, data in each data switching direction becomes more recognizable visually.
Abstract:
A communication system (S) exchanges data between a plurality of devices to execute a predetermined function. In addition, the communication system (S) connects one device and one other device by a plurality of difference communication methods, and in a case of data transfer being interrupted during data transfer by a first communication method, controls so as to establish the first communication method by way of a second communication method, and then causes data transfer by the first communication method to restart.
Abstract:
A synchronous photographing system includes an operation terminal that performs a photographing operation; and a plurality of image capture apparatuses that performs synchronous photographing in response to an instruction from the operation terminal, in which, among the plurality of image capture apparatuses, one of a plurality of image capture apparatuses participating in synchronous photographing is set as a main image capture apparatus and other image capture apparatuses are set as sub image capture apparatuses, the main image capture apparatus performs control to perform synchronization of a photographing timing among the plurality of image capture apparatuses participating in synchronous photographing, and the operation terminal performs control to instruct the plurality of image capture apparatuses to perform instruction contents from a user.
Abstract:
A camera operation apparatus including a display unit; and a processor which is configured to: list and display a profile image that is identification information of each camera corresponding to each of a plurality of cameras capable of synchronous photographing on a screen display of the display unit; receive a live view image of the camera corresponding to the profile image selected according to a selection of the profile image listed and displayed; and display the received live view image on the display unit.
Abstract:
An image recording system including a user wearable device which includes a visual field direction detection unit which detects a user's visual field direction, and an imaging device which includes an imaging unit which captures an image and is external to the user wearable device, in which a computing device in one of the user wearable device and the imaging device is operable to function as an image processing unit which performs predetermined image processing on the image captured by the imaging unit based on the user's visual field direction.