Abstract:
A motion measurement apparatus according to an embodiment of the present technology includes a controller unit. The controller unit extracts, from an acceleration in each direction of three axes that includes a dynamic acceleration component and a static acceleration component of a detection target that moves within a space, the dynamic acceleration component of the detection target, and generates, as a control signal, a change in kinematic physical quantity of a posture of the detection target from the dynamic acceleration component.
Abstract:
Provided is a sensing system, a sensor device, and a sensor fixture. The sensing system includes a sensor fixture that has a mode corresponding to an attachment attitude to a target object and a sensor device that is attachable with the attachment attitude to the target object via the sensor fixture. The sensor device includes a sensor unit that senses information regarding the target object, and an acquisition unit that acquires information indicating the attachment attitude based on the mode of the sensor fixture.
Abstract:
There is provided an information processing apparatus to provide a mechanism capable of improving accuracy of detection of abnormality of sensors without changing configurations of the sensors, the information processing apparatus including: an acquisition unit configured to obtain a first value obtained by measurement in a first measurement unit and a second value obtained by measurement in a second measurement unit whose dynamic range regarding measurement is a second dynamic range different from a first dynamic range of the first measurement unit; and a detection unit configured to detect abnormality of the first value or the second value on a basis of a change in a correlation between the first value and the second value.
Abstract:
An attitude control device is provided and includes a control unit that determines a gravity direction in a flying object on a basis of static acceleration components computed on a basis of a first acceleration detection signal obtained by detecting dynamic acceleration components acting on the flying object and a second acceleration detection signal obtained by detecting the dynamic acceleration components and the static acceleration components acting on the flying object, and controls an attitude of the flying object on a basis of the gravity direction.
Abstract:
Certain aspects of an apparatus and a method for controlling a user interface of a device may comprise one or more sensors coupled to a vibratory surface associated with the apparatus. The one or more sensors may detect one or more vibrations of the vibratory surface caused by an interaction of an object with the vibratory surface. The one or more sensors may generate one or more vibratory signals in response to the detected one or more vibrations. One or more processors that are communicatively coupled to the one or more sensors may generate a control signal corresponding to the one or more generated vibratory signals to control the user interface of the device.
Abstract:
A posture control apparatus, comprising a control unit that determines, on a basis of a static acceleration component, a gravity direction in a holding apparatus holding an object to be held, the static acceleration component being computed on a basis of a first acceleration detection signal and a second acceleration detection signal, the first acceleration detection signal being acquired by detecting a dynamic acceleration component acting on the holding apparatus, the second acceleration detection signal being acquired by detecting the dynamic acceleration component and the static acceleration component acting on the holding apparatus, and controls, by controlling posture of the holding apparatus on a basis of the gravity direction, posture of the object to be held.
Abstract:
An information processing device 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 and a reference timing extracting section that extracts a reference timing based on a plurality of pieces of the motion information. Also included are 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 based on the reference timing.
Abstract:
A 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 and has an alternating current (AC) waveform corresponding to the acceleration. The second acceleration detection signal including information relating to the acceleration and has an output waveform. An AC component corresponding to the acceleration is 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:
The sensor device includes a sensor unit that detects information of an object, an attachment portion detachably attached to one or more attachment positions on the object, and an acquisition unit that acquires information indicating the attachment position to which the attachment portion is attached.
Abstract:
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.