Abstract:
By using various information such as GPS information, cartographic information, and atmospheric pressure acquired by a sensor, a CPU of an imaging device calculates a motion vector in a limited MV calculation area acquired by excluding from images an area where radial motion vectors occur which highly possibly give an adverse effect to motion vector calculation, in accordance with the gravity direction with respect to the imaging device, the orientation of the imaging device, and the slope angle of the road where the imaging device is moving forward. After calculating the motion vector, the CPU estimates a blur amount between frames from the calculated motion vector and, based on this blur amount, performs the alignment of a feature point between the frames by image deformation processing.
Abstract:
An electronic device includes at least one processor that identifies a cyclic change related to an arm swing of a user from a three-dimensional acceleration measured by a first measurer. The at least one processor defines a two-dimensional plane containing a plane of the arm swing of the user from the three-dimensional acceleration measured at a wrist of the user, detects the cyclic change as a motion on an arc centered at a shoulder of the user in the two-dimensional plane, and obtains an angle of the arm swing.
Abstract:
An image composition apparatus 1 is provided with an information acquisition section 53, an image adjustment section 54 and a synthesis section 56. The information acquisition section 53 acquires numerical values relating to brightness of image regions with a particular hue in corrected exposure image data among plural sets of image data that are sequentially captured with the exposure duration being varied. The synthesis section 56 performs pixel addition of the plural sets of image data by changing a degree of addition of the plural sets of image data, based on the numerical values thus acquired, and generates composite image data with a widened dynamic range.
Abstract:
An electronic device includes at least one processor that identifies a cyclic change related to an arm swing of a user from a three-dimensional acceleration measured by a measurer. The at least one processor defines a two-dimensional plane containing a plane of the arm swing of the user from the three-dimensional acceleration measured at a wrist of the user, detects the cyclic change as a motion on an arc centered at a shoulder of the user in the two-dimensional plane, obtains, from the three-dimensional acceleration, a direction of a line segment connecting the wrist and the shoulder, and obtains a bending angle of an elbow of the user based on the line segment.
Abstract:
When a predetermined image switching operation is started, a control section refers to a judgment result as to whether a display portion specified in advance by a touch operation has been identified as a search target. If no display portion has been identified, the control section performs display control in response to the predetermined image switching operation such that images sequentially selected in a forward or reverse direction from a stored image group of images arranged according to a predetermined criterion are displayed on a display section. If a display portion has been identified as a search target, the control section performs display control such that a relevant search condition is acquired with reference to a search condition table based on the search target, the stored image group is searched for another image other than an image being displayed based on the search condition, and the found image is displayed.
Abstract:
The information processing device 1 includes an acceleration acquisition unit, a vertical direction estimation unit, and a traveling direction estimation unit. The acceleration acquisition unit acquires acceleration occurring by the movement of the user. The vertical direction estimation unit estimates a first vertical direction based on the acceleration acquired by the acceleration acquisition unit. The traveling direction estimation unit estimates a first traveling direction (first traveling direction vector) corresponding to the first vertical direction (first vertical direction vector) estimated by the vertical direction estimation unit. The traveling direction estimation unit estimates a second traveling direction (second traveling direction vector) by shifting the first traveling direction based on the vertical direction as reference and the vertical direction (second vertical direction vector) estimated after the reference vertical direction by the vertical direction estimation unit.
Abstract:
An image processing apparatus, including a first obtaining unit which obtains image data; a first generation unit which generates a plurality of levels of pixel values that are respectively smoothed in a plurality of levels of resolutions; a correction unit which corrects the pixel value of the obtained image data for each of the levels; and a control unit which controls so as to form image data in which the pixel value of the obtained image data is enhanced by utilizing a high frequency component in each of the levels of the image data having the pixel value corrected by the correction unit, the high frequency component corresponding to each of the levels of the resolutions.