Abstract:
An image processing device includes a memory storing a program, and at least one processor that executes the program. The processor sets an exposure condition for video imaging, acquires an image of the video imaged under the exposure condition, and calculates a brightness distribution from the image. The exposure condition includes a first exposure condition for causing the imaging device to capture an image using a first exposure value, and a second exposure condition causing the imaging device to capture an image using an exposure value higher than the first exposure condition and/or causing the imaging device to capture an image using a lower exposure value than the first exposure condition. The processor sets the first exposure condition or sets the first and the second exposure condition, based on the brightness distribution of the image captured under the first exposure condition after the first exposure condition is set.
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:
An image-capture unit of an image-capture apparatus captures an image of a subject. A display unit can be disposed in a range where emission light from the display unit reaches the subject whose image is captured by the image-capture unit and can display the image using the emission light. An emission light control unit executes control for changing at least one of a display content and a display state of an image displayed on the display unit at a time of photographing in consideration of an influence of the emission light (irradiation light) from the display unit on a photographing state of the subject.
Abstract:
The present invention is to surely acquire an image of a part according to an instruction from a video regardless of presence or absence of communication connection and a communication state. A controller unit acquires instruction information (log) as instruction information to acquire an image, where the instruction information corresponds to time information related to time to acquire the image, and acquires an image of a temporal part indicated by the time information corresponding to the instruction information, from each of plural videos recorded continuously in terms of time, synchronized with the time information corresponding to the acquired instruction information, and different in content from one another.
Abstract:
An image pickup apparatus includes a communication unit, a process unit, a transmission control unit, an obtaining unit and a process control unit. The communication unit is connected to an external device via a predetermined communication line so as to establish communication with the external device. The process unit successively processes images picked up by an image pickup unit. The transmission control unit makes the communication unit send the images to the external device via the communication line. The obtaining unit obtains communication quality information on quality of the communication with the external device. The process control unit controls at least one of (i) an action content of the image pickup unit and (ii) a process content of the process unit on the basis of the communication quality information.
Abstract:
According to an embodiment of the present invention, an image processing apparatus includes a processor, and a computer-readable medium in which a computer program product is stored. The computer program product causes the processor to perform operations to acquire an image, set an area in the image, change the area set in the image, acquire information on an image near at least one of the area before the change and the area after the change, correct an image in at least one of the area before the change and the area after the change based on the acquired information, and control a display unit to sequentially display the images in the area before the change and the area after the change based on the result of the correction.
Abstract:
A CPU of an imaging device of the present invention causes an interval moving image to be captured for each interval photographing, selects frames to be stored as still images from among a plurality of frames constituting the interval moving image based on a face image, blurring, and the presence or absence of a change, and causes these selected still images to be stored in association with the interval moving image. When an amount of data exceeding that for a preset storage time length is recorded, the CPU first deletes low-grade interval moving images. Then, if this is not enough, the CPU deletes low-grade still images, and thereby retains an image file (a mixture of moving images and still images) within the desired time length.
Abstract:
A signal light display determination device includes a memory to store a program; and a processor to execute the program, wherein the processor executes the program to
acquire image information regarding a first region and a second region that is in close proximity to the first region, the first region and the second region being within a region containing at least a portion of a display of a signal light that is image-captured by a camera, determine, based on the acquired image information regarding the second region, a display state of the display included in the second region, and correct the acquired image information regarding the first region when a determination is made that the display state of the display included the second region has not continued in a state below a threshold for a predetermined time period, the correction being made based on the acquired image information regarding second region.
Abstract:
A signal light display determination device includes a memory to store a program; and a processor to execute the program, wherein the processor executes the program to acquire image information regarding a first region and a second region that is in close proximity to the first region, the first region and the second region being within a region containing at least a portion of a display of a signal light that is image-captured by a camera, determine, based on the acquired image information regarding the second region, a display state of the display included in the second region, and correct the acquired image information regarding the first region when a determination is made that the display state of the display included the second region has not continued in a state below a threshold for a predetermined time period, the correction being made based on the acquired image information regarding second region.
Abstract:
An imaging apparatus including an imaging sensor, a memory, and a CPU. The CPU is operable as: (i) repeatedly acquiring an image by driving the imaging sensor at preset timing, (ii) acquiring an image by driving the imaging sensor by receiving an instruction at arbitrary timing, while maintaining acquisition processing by the (i), (iii) storing, in the memory, the image acquired by the (i) and the image acquired by the (ii), (iv) judging whether the arbitrary timing and the preset timing coincide with each other, and (v) when judged that the arbitrary timing and the preset timing coincide with each other as a result of a judgment of the (iv), controlling to store, in the memory, the image acquired by one of the (i) and the (ii), as the image acquired by the other of the (i) and the (ii), or controlling the imaging sensor.