Abstract:
A vehicle control apparatus according to an embodiment of the present technology includes a control unit. The control unit generates a control signal for controlling behavior of a vehicle body on a basis of a first acceleration detection signal and a second acceleration detection signal, the first acceleration detection signal including information relating to an acceleration acting on the vehicle body, the first acceleration detection signal having an alternating current waveform corresponding to the acceleration, the second acceleration detection signal including information relating to the acceleration, the second acceleration detection signal having an output waveform, an alternating current component corresponding to the acceleration being superimposed on a direct current component in the output waveform.
Abstract:
[Object] To make the both images easy to be compared in the case where a plurality of series of images are arranged alongside and displayed. [Solution] An information processing device according to the present disclosure includes: a motion information acquiring section that acquires a plurality of pieces of motion information showing a series of motions of a same kind performed by a plurality of users; a reference timing extracting section that extracts a reference timing on the basis of a plurality of pieces of the motion information; an image information acquiring section that acquires a plurality of series of image information corresponding to a plurality of pieces of the motion information; and a synchronization processing section that synchronizes a plurality of pieces of the image information on the basis of the reference timing.
Abstract:
[Object] To appropriately decide an image generation target position in a space. [Solution] Provided is an information processing device including a processor configured to achieve a function of collecting information indicating visual target positions from a plurality of viewpoints existing in a space, and a function of evaluating positions in the space in accordance with density of the visual target positions.
Abstract:
[Object] Provided are a camera control device and an imaging device capable of improving camera shake correction accuracy.[Solving Means] A camera control device according to an aspect of the present technology includes a control unit. The control unit generates a first control signal for camera shake correction on the basis of a first acceleration detection signal, a second acceleration detection signal, and an angular velocity signal, the first acceleration detection signal including information relating to an acceleration acting on a camera, the first acceleration detection signal having an alternating current (AC) waveform corresponding to the acceleration, the second acceleration detection signal including information relating to the acceleration, the second acceleration detection signal having an output waveform, an AC component corresponding to the acceleration being superimposed on a direct current (DC) component in the output waveform, the angular velocity signal including information relating to an angular velocity acting on the camera.
Abstract:
[Object] To provide a sensor device, sensing method, and information processing device, capable of executing more flexible measurement for visualizing the movement of an object. [Solution] The sensor device includes: a sensor unit configured to sense information relating to an object; an attachment portion configured to detachably attached to any of one or more attachment positions provided on the object; and an acquisition unit configured to acquire information indicating the attachment position to which the attachment portion is attached.
Abstract:
[Object] To provide a sensing system, a sensor device, and a sensor fixture. [Solution] The sensing system includes: a sensor fixture that has a mode corresponding to an attachment attitude to a target object; and a sensor device configured to be attached with the attachment attitude to the target object via the sensor fixture, the sensor device including a sensor unit configured to sense information regarding the target object, and an acquisition unit configured to acquire information indicating the attachment attitude on a basis of the mode of the sensor fixture.
Abstract:
[Object] To provide an information processing device and information processing method, capable of obtaining useful information in which the attitude of a target person is taken into consideration from sensor information. [Solution] The information processing device includes: an acquisition unit configured to acquire information indicating a measurement result from a plurality of sensor devices configured to measure a pressure distribution of an attached part of a body of a user; an estimation unit configured to estimate arrangement of a plurality of parts to which the sensor devices are attached on the basis of a captured image including the plurality of parts; and a calculation unit configured to calculate information on the plurality of parts from the information indicating the measurement result acquired by the acquisition unit on the basis of the arrangement of the plurality of parts estimated by the estimation unit.
Abstract:
[Object] To evaluate action itself on the basis of a variate related to the action.[Solution] Provided is an information processing device including: a variate acquisition unit configured to acquire a first variate related to a content of action, and a second variate related to context in which the action is taken; and a score calculation unit configured to calculate a score for evaluating the action on a basis of the first variate and the second variate.
Abstract:
An apparatus includes a communications interface that receives first sensed data from a first sensor attached to a user and second sensed data from a second sensor attached to a user. That apparatus also includes circuitry that analyzes the first sensed data and the second sensed data and provides a display signal that causes a display to produce first visual information regarding a motion of the user and second visual information regarding the motion of the user, the first visual information being different than the second visual information.