Abstract:
The present technology relates to an information processing device, an information processing method, and a program that can more exactly indicate a position outside a display region. An outside-display-region-position designation unit designates a position outside a display region of an image display unit, and a drawing/sound control unit controls output of a sound of an AR object from a sound output unit while moving the AR object toward the designated position. The present technology can be applied to a wearable computer, for example, a glasses-type device having a pair of image display units for a left eye and a right eye.
Abstract:
There is provided a wearable device including an attachment unit, a motion sensor and a control unit. The attachment unit has a display and an imaging unit. The attachment unit is configured to be attachable to the user. The motion sensor is configured to be capable of detecting a spatial movement of the imaging unit. The control unit is configured to determine whether or not the imaging unit is in a predetermined resting state, based on an output of the motion sensor, and when the imaging unit is not in the predetermined resting state, limit a photographing operation of the imaging unit.
Abstract:
The present technology relates to an information processing device, an information processing method, and a program that can more exactly indicate a position outside a display region. An outside-display-region-position designation unit designates a position outside a display region of an image display unit, and a drawing/sound control unit controls output of a sound of an AR object from a sound output unit while moving the AR objet toward the designated position. The present technology can be applied to a wearable computer, for example, a glasses-type device having a pair of image display units for a left eye and a right eye.
Abstract:
The present technology relates to an information processing device, an information processing method, and a program that can more exactly indicate a position outside a display region. An outside-display-region-position designation unit designates a position outside a display region of an image display unit, and a drawing/sound control unit controls output of a sound of an AR object from a sound output unit while moving the AR objet toward the designated position. The present technology can be applied to a wearable computer, for example, a glasses-type device having a pair of image display units for a left eye and a right eye.
Abstract:
[Object] To effectively reduce power consumption of a wearable optical device by determining whether the wearable optical device is usable.[Solution] Provided is an electronic apparatus including a wearable optical device, a state detection unit configured to detect a state relating to the wearable optical device, a state determination unit configured to determine that the detected state is at least one of a first state in which the wearable optical device is worn by a user in usable state or a second state in which the wearable optical device is worn or carried by the user in unusable state, and a power supply controller configured to control a power supply state of the electronic apparatus based on a result obtained by the determination.
Abstract:
[Object] To effectively reduce power consumption of a wearable optical device by determining whether the wearable optical device is usable. [Solution] Provided is an electronic apparatus including a wearable optical device, a state detection unit configured to detect a state relating to the wearable optical device, a state determination unit configured to determine that the detected state is at least one of a first state in which the wearable optical device is worn by a user in usable state or a second state in which the wearable optical device is worn or carried by the user in unusable state, and a power supply controller configured to control a power supply state of the electronic apparatus based on a result obtained by the determination.
Abstract:
There is provided a wearable device including an attachment unit, a motion sensor and a control unit. The attachment unit has a display and an imaging unit. The attachment unit is attachable to the user. The motion sensor is capable of detecting a spatial movement of the imaging unit. The control unit determines whether or not the imaging unit is in a predetermined resting state, based on an output of the motion sensor, and when the imaging unit is not in the predetermined resting state, limit a photographing operation of the imaging unit.
Abstract:
A wearable display according to an embodiment of the present technology includes a display unit; a detection unit; and a display control unit. The display unit is configured to be attachable to a user, the display unit including a display area that provides a field of view in real space to the user. The detection unit detects orientation of the display unit around at least one axis. The display control unit is configured to be capable of presenting a first image relating to the orientation of the display unit in the display area on the basis of an output of the detection unit. The display control unit is configure to be capable of causing, depending on a change in the orientation, the first image to move in the display area in a direction opposite to a movement direction of the display unit by a first movement amount smaller than a movement amount of the display unit.
Abstract:
Voice data communication is performed appropriately depending on the purposes of use. Provided is a wearable device including a microphone (172), a speaker (174), an input voice data acquisition unit (510) configured to acquire input voice data from the microphone (174), an output voice data providing unit (520) configured to provide output voice data to the speaker (172), a communication unit (530) configured to perform communication sessions for allowing the input voice data and the output voice data to be transmitted and received in accordance with a hands-free profile of Bluetooth between the communication unit and a smartphone (200), and a controller (540) configured to invalidate a session triggered by the smartphone (200) among the communication sessions.Representative DrawingFIG. 3
Abstract:
To enhance visibility of an image provided by a wearable optical device depending on different situations. Provided is an electronic apparatus including an illuminance information acquisition unit (510) configured to acquire illuminance information indicating illuminance of light incident on a wearable optical device toward a viewer from a real space, a situation information acquisition unit (540) configured to acquire situation information indicating a situation surrounding the wearable optical device, a luminance determination unit (520) configured to determine luminance of light emitted by the wearable optical device to allow the viewer to perceive an image superimposed on the real space, the determination of luminance being performed on a basis of the illuminance information and the situation information, and a controller (530) configured to control the wearable optical device to cause the wearable optical device to emit light having the determined luminance.