Abstract:
A sensor data extraction system of the present invention includes an exercise data obtaining section which obtains exercise data related to an exercise status of a human body, an extraction condition specifying section which specifies an extraction condition for extracting a portion required for analysis processing using the exercise data, from among the exercise data obtained by the exercise data obtaining section, a data extracting section which extracts exercise data matching the extraction condition from among the exercise data obtained by the exercise data obtaining section, a data transfer section which transfers the extracted exercise data from the exercise data obtaining section, and a data analyzing section which performs the analysis processing by using the exercise data transferred by the data transfer section.
Abstract:
An exercise information display system of the present invention includes a sensor device which obtains data associated with a motion status of a human body during an exercise, a data processing device which generates plural types of exercise information based on the data obtained by the sensor device, and a viewing device which displays, from among the plural types of exercise information, at least first information indicating a posture of the human body during the exercise and second information associated with the first information in a display format where the first information and the second information are displayed in conjunction with each other.
Abstract:
A display control apparatus includes a plurality of image capture units, an output unit, a behavior detection unit, a situation detection unit, a display image generation unit, and a display control unit. The image capture units capture images in different directions. The output unit can be recognized visually by a person wearing the display control apparatus. The behavior detection unit or the situation detection unit detects behavior of the person or a moving situation of an image of a subject in a plurality of captured images captured by the image capture units. The display image generation unit and the display control unit execute control to produce an output so as to make a switch to any of the captured images captured by the image capture units, and display the switched captured image on the output unit in response to the behavior of the person or the moving situation of the image of the subject detected by the behavior detection unit or the situation detection unit.
Abstract:
A sound collecting device including: a line-of-sight detector configured to detect line-of-sight information of user's eyes; a microphone; a processor configured to control the microphone so as to achieve sensitivity in the line-of-sight direction of the eyes higher than in other directions on the basis of the line-of-sight information detected by the line-of-sight detector; and an attachment portion for attaching the line-of-sight detector and the microphone on a head portion or an ear portion, wherein the microphone is provided on each of the two positions of the attachment portion, and the processor controls a plurality of the microphones on the basis of the line-of-sight information.
Abstract:
An exercise support device includes: a display section which has a display area where a first object as a virtual mobile object and a second object corresponding to a user are displayed; and a control section which controls display positions of the first object and the second object in the display area. The control section, while the user is moving from a first point to a second point, controls such that the display position of the first object is set to a position corresponding to a first movement distance based on a set target pace and an elapsed time after the user starts movement; and that the display position of the second object is set to a position corresponding to a second movement distance that the user moves from the first point in the elapsed time.
Abstract:
A display control apparatus includes a processor configured to acquire a peripheral image around a predetermined object captured by image capture units. The predetermined object is different from the image capture units. The processor is also configured to determine whether or not a moving situation of an image of a moving subject included in the acquired peripheral image corresponds to a predetermined specific situation. The moving situation is a moving situation of the image of the moving subject with respect to the predetermined object. The processor is further configured to execute control to produce an output so as to display distinguishably on a display an image of a partial region among the peripheral image, the partial region including the image of the moving subject, when the moving situation of the image of the moving subject corresponds to the predetermined moving situation.
Abstract:
A sensor data extraction system including at least one computation circuit; and at least one memory storing instructions. When executed by the at least one computation circuit, the at least one memory storing circuit cause the at least one computation circuit to perform operations including obtaining exercise data including position data of a human body during exercise; specifying an extraction condition for acquiring exercise data for analysis from the obtained exercise data, the extraction condition relating to a meteorological change; obtaining environmental information including meteorological information from environmental information stored in a storage, the environmental information being associated with time data; extracting environmental information from the obtained environmental information, based on the specified extraction condition relating to the meteorological change; and acquiring the exercise data for analysis based on the associated time data of the extracted environmental information.
Abstract:
A required time calculating system including a required time calculating section, in which the required time calculating section extracts the topographic data of one section of a measured route similar to or matching the topographic data of one section of a calculated route determined from the positional and altitude information of each point in the above-described section of the calculated route divided into a plurality of sections from among the topographic data of the measured route determined from the positional and altitude information of each point of the measured route detected by a first sensor that travels with a human when the human travels a predetermined section of the measured route, and calculates the amount of time required for the human to travel the above-described section of the calculated route based on the amount of time taken for the human to travel the above-described section of the measured route.