Abstract:
In the case where a phenomenon called brightness saturation occurs due to high brightness of light output from a transmission apparatus and high lightness in a portion of a transmitter (light source) within a frame obtained by imaging in a reception apparatus, a decoder in a reception apparatus performs first image processing of shifting the focus by moving a lens in an imager or a filtering process (gradation filtering process) of an image for replacing the color of a brightness saturation area with the color surrounding the brightness saturation area, before determination of a change area, determination of the color of the change area, and decoding of bit string data.
Abstract:
An image processing apparatus includes: an obtaining unit configured to obtain an imprint image where an imprint is captured, the imprint having code information added to a frame portion; an identifying unit configured to identify a frame image area as a read area where the code information is read, the frame image area corresponding to an imprint of the frame portion in the imprint image obtained by the obtaining unit; and a reading unit configured to read the code information from the read area identified by the identifying unit.
Abstract:
An imaging apparatus includes a display section, a capturing section which captures an image at a first viewing angle, a capturing control section which performs a plurality of capturing operations by the capturing section, a generation section which generates a composite image reproducing an image captured at a second viewing angle that is wider than the first viewing angle by combining a plurality of images acquired by the plurality of capturing operations by the capturing control section, and a display control section which displays the composite image generated by the generation section on the display section.
Abstract:
An imaging apparatus include a display section, a capturing section which captures an image at a first viewing angle, a capturing control section which performs a plurality of capturing operations by the capturing section, a generation section which generates a composite image reproducing an image captured at a second viewing angle that is wider than the first viewing angle by combining a plurality of images acquired by the plurality of capturing operations by the capturing control section, and a display control section which displays the composite image generated by the generation section on the display section.
Abstract:
A digital camera includes an image capturing unit, an angular velocity sensor, an image determination unit, and an image composition unit. The angular velocity sensor acquires a displacement amount in a field of view of image data when the image data is captured at predetermined time intervals. The image determination unit sets a determination criterion for determining whether the image data thus captured is to be combined or not based on the displacement amount in the field of view acquired by the angular velocity sensor. Also, the image determination unit determines whether or not the image data thus captured is valid as a composition target based on the determination criterion thus set. The image composition unit combines image data determined by the image determination unit as being valid as a composition target.
Abstract:
A digital camera includes an image capturing unit, an angular velocity sensor, an image determination unit, and an image composition unit. The angular velocity sensor acquires a displacement amount in a field of view of image data when the image data is captured at predetermined time intervals. The image determination unit sets a determination criterion for determining whether the image data thus captured is to be combined or not based on the displacement amount in the field of view acquired by the angular velocity sensor. Also, the image determination unit determines whether or not the image data thus captured is valid as a composition target based on the determination criterion thus set. The image composition unit combines image data determined by the image determination unit as being valid as a composition target.
Abstract:
An image processing apparatus of the present invention acquires a photographed image of an object on which indicators have been arranged, detects the indicators from the photographed image with use of a comparison reference image for pattern matching prepared in advance, and instructs to perform predetermined processing based on the detected indicators. The indicators each have a pattern where influence of geometrical image distortion generated corresponding to a photographing distance or a photographing angle with respect to the object is restrained by a central portion of the photographed image, and the comparison reference image is a partial image corresponding to a central portion of the indicator. The indicators are detected from the photographed image by comparing the comparison reference image with the acquired photographed image.