Abstract:
[Object] To provide a technology capable of accurately controlling an attitude of a flying object.[Solving Means] An attitude control device according to the technology includes a control unit. The control unit determines a gravity direction in a flying object on the basis of static acceleration components computed on the 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 the basis of the gravity direction.[Selected Drawing] FIG. 16
Abstract:
An information processing system, an information processing apparatus, an information processing method, and an information record medium that are controlled to generate an operation effect sound that differs for each user of a card upon an operation for electronic money are provided. A card 10 records user information 12, balance information 13, and audio data 14. The card 10 makes a settlement of electronic money with a vending machine 20 to buy a commodity. When the card 10 is presented to the vending machine 20, it reads the user information 12, the balance information 13, and the audio data 14 from the card 10 through wireless communications. The vending machine 20 makes a settlement on the basis of both information of the commodity that a user has selected and the balance information 13. As a result, the vending machine 20 provides the selected commodity to the user. On the other hand, with audio data 14, at a predetermined timing of the settlement, a predetermined sound is output. Audio data may be stored only in the vending machine 20 or both in the card 10 and in the vending machine 20. A sound that differs for each user and for each event is output.
Abstract:
To detect a motion of a hitting tool more precisely by a sensor, provided is a sensor device including: a base member configured to be mounted on a hitting tool via a fitting structure; a substrate joined to the base member; a sensor disposed on the substrate and configured to detect a motion of the hitting tool delivered via the base member and the substrate; a communication unit configured to transmit a detection result of the motion of the hitting tool to an external device; and an exterior member configured to cover the sensor and the communication unit.
Abstract:
An information processing system includes processing circuitry that is configured to receive input data from a shock sensor which outputs data based on a shock on the shock sensor, and identify a target segment of time-series data that is output from a motion sensor that senses a motion of an object. The target segment includes a pre-shock portion that occurs before the shock event and a post-shock portion that occurs after the shock event, the shock event is recognized based on the data from the shock sensor.
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:
There is provided an information processing apparatus including a data acquiring unit configured to acquire content to which metadata is attached and the metadata attached to the content, the metadata being generated from data obtained from a sensor mounted on a subject, and a display control unit configured to reflect contents of the metadata acquired by the data acquiring unit in display of the content to which the metadata acquired by the data acquiring unit is attached.
Abstract:
[Object] To provide a technology capable of accurately controlling posture of an object to be held.[Solving Means] A posture control apparatus according to the present technology includes a control unit. The control unit determines, on the 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 the 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 the basis of the gravity direction, posture of the object to be held.
Abstract:
An information processing system inclines processing circuitry that is configured to receive input data from a shock sensor which outputs data based on a shock on the shock sensor, and identify a target segment of time-series data that is output from a motion sensor that senses a motion of an object. The target segment includes a pre-shock portion that occurs before the shock event and a post-shock portion that occurs after the shock event, the shock event is recognized based on the data from the shock sensor.
Abstract:
There is provided a sensor device that can easily reduce an accumulated error in a sensor, the sensor device including: a first inertial sensor; a first information code formed to be capable of being imaged from an outside; and a first imaging unit capable of imaging a second information code formed on another sensor device.
Abstract:
An electronic device includes processing circuitry configured to produce an audio sound from a virtual sound source position. The circuitry also acquires from a user-input a sound position information of a perceived sound source position, and then controls an enable or disable of a function of the electronic device based on a relationship between the virtual sound source position and the perceived sound source position.