Abstract:
An estimated goal time display system includes at least one processor; and at least one memory. The at least one processor is configured to perform the following according to a program stored in the at least one memory: first deriving that derives a pace that a user runs a distance set in advance based on exercise data obtained when the user is running; second deriving that derives an estimated goal time that the user will reach a preset goal point, a faster-pace estimated goal time that the user will reach the goal point if the user makes the pace a predetermined amount of time faster, and a slower-pace estimated goal time that the user will reach the goal point if the user makes the pace a predetermined amount of time slower; and display controlling that displays on a display the estimated goal time, the faster-pace estimated goal time and the slower-pace estimated goal time.
Abstract:
A live view image generation unit sequentially displays on a display screen a captured image that is sequentially outputted from an image capture unit as a live view image. In a case of photographing and recording being directed, a review image generation unit displays a captured image for recording outputted from the image capture unit as a first review image on a portion of a display screen in a state of displaying the live view image. A photographing result evaluation unit evaluates a photographing result based on a captured image for recording outputted from the image capture unit according to an direction for photographing and recording. The review image generation unit performs display control to make a display form of the first review image different according to the evaluation result by the photographing result evaluation unit.
Abstract:
Problem: To simplify an operation for causing an apparatus to perform desired control.Solution to Problem: In an image capturing apparatus 1, an image capturing unit 16 continuously captures an image of a subject and sequentially outputs image data. An image analysis unit 53 determines whether or not there is an instruction regarding storage of the image data outputted by the image capturing unit 16. A storage control unit 56 carries out control to store the image data outputted from the image capturing unit 16 in a storage unit 19 upon it being determined that there is an instruction regarding storage. An output control unit 51 carries out control to display, in an output unit 18, a live view image corresponding to the image data sequentially outputted by the image capturing unit 16 along with a first indicator image for processing the stored image data. An image analysis unit 53 determines whether or not a position of the image of the subject in the live view image displayed in the output unit 18 overlaps with a position of the first indicator image, and when it is determined that the images overlap, predetermined processing is carried out on the image data stored in the storage unit 19.
Abstract:
A digital camera includes an image capturing unit, an image composition unit, and a display control unit. The image capturing unit captures frames at predetermined time intervals. The image composition unit sequentially combines at least a part of image data from image data of a plurality of frames sequentially captured by the image capturing unit at predetermined time intervals. The display control unit performs control to sequentially display image data combined by the image composition unit while the image data of the frames are captured by the image capturing unit at predetermined time intervals.
Abstract:
An image capture apparatus includes a photographic scene selection section and a parameter setting section. The photographic scene selection section selects a photographic scene. The parameter setting section independently sets, according to the photographic scene selected by the photographic scene selection section, each of a photographing parameter relating to time-lapse photography that captures images at a predetermined interval and generates a moving image with a shorter playback time than photographing time, and a playback parameter relating to playback of a time-lapse moving image photographed at the photographing parameter.
Abstract:
A simultaneous replay information storage unit stores a replay condition when simultaneously replaying the plurality of pieces of moving image data constituting the set of moving images so as to correspond to each of the sets of moving images in which a combination of the plurality of pieces of moving image data is different, respectively. A simultaneous replay control unit simultaneously replays, in a case in which the set of moving images as a replay target is designated from among a plurality of sets of moving images stored in the simultaneous replay information storage unit, a plurality of pieces of moving image data constituting the set of moving images, with a replay condition that is stored to be associated with the designated set of moving images.
Abstract:
An image generating apparatus including a processor and a memory having instructions stored therein which are executable by the processor to cause the processor to: cause a display to separately and simultaneously display (i) a panoramic image in progress corresponding to images which are captured by an image capturing unit, and (ii) a live-view image corresponding to an image that is newly captured by the image capturing unit while images are being captured by the image capturing unit; receive an instruction to terminate image capture processing for generating panoramic image data while the panoramic image in progress and the live-view image are being displayed; and perform, in response to reception of the instruction, control to record, as a completed panoramic image, panoramic image data generated from the images captured by a time when reception of the instruction is finished, even if images have not yet been captured in a predetermined capture range set in advance for a full panoramic image to be generated.
Abstract:
A digital camera includes an image capturing unit, an image composition unit, and a display control unit. The image capturing unit captures frames at predetermined time intervals. The image composition unit sequentially combines at least a part of image data from image data of a plurality of frames sequentially captured by the image capturing unit at predetermined time intervals. The display control unit performs control to sequentially display image data combined by the image composition unit while the image data of the frames are captured by the image capturing unit at predetermined time intervals.
Abstract:
A training determination device includes: a determination unit configured to determine a training type, based on exercise data obtained when a user has performed a running training; a storage unit configured to store training history information in which the training type determined by the determination unit is associated with time information for performed training and a moving distance during the performed training; a calculation unit configured to perform at least two types of different calculation for a cumulative total of the moving distance for each training type, based on the training history information stored in the storage unit; and a display controller configured to display an image indicating the cumulative total of the moving distance for each training type calculated by the calculation unit.
Abstract:
A running method determination device includes at least one processor that executes a program stored in at least one memory. The at least one processor acquires motion data at a time of running of a user, calculates, based on acceleration data in multiple axial directions included in the acquired motion data, a sum of acceleration vectors in the multiple axial directions as a resultant vector, and determines a type of a running method of the user using at least an angle of the calculated resultant vector as a standard of determination.