Abstract:
Provided is an imaging apparatus including: an imaging unit; a display unit, through which at least a part of an imaging region of the imaging unit can be seen in a see-through manner and which is configured to display a stereoscopic image formed of a left eye image and a right eye image; a focal distance adjustment unit configured to adjust a focal distance of the imaging unit; and a display controller configured to generate the left eye image and the right eye image such that a display object indicating the focal distance is seen at a depth position corresponding to the focal distance and cause the display unit to display the left eye image and the right eye image.
Abstract:
There is provided an information processing apparatus including an operation detecting unit configured to detect an operation of an operator to an object that is displayed in a display screen image for performing a predetermined input, a sight line detecting unit configured to detect a movement of a sight line of the operator on the display screen image, and a correction coefficient acquiring unit configured to acquire a correction coefficient for correcting an error of a case where the operator performs sight line input, on the basis of the movement of the sight line detected during the operation of the operator to the object.
Abstract:
Aspects of the present invention include a device comprising a first sensor and a circuitry configured to detect a first user action and a second user action, the second user action being detected by the first sensor. The circuitry is further configured to designate a first mode based on the first user action and a second mode based on the second user action, the first mode and the second mode being power saving modes and the second mode is configured to save power consumed by the first sensor.
Abstract:
To provide a technology capable of calculating a position of an image displayed on a screen more flexibly. Provided is an information processing device including: a first reception unit configured to receive a first signal from a first input device; a second reception unit configured to receive a second signal different from the first signal from a second input device; a calculation unit configured to calculate a position of an image to be displayed on a screen on the basis of the first or second signal; and a display control unit configured to display the image at the position. The calculation unit has a first mode in which the position of the image is calculated on the basis of the first signal and a second mode in which the position of the image is calculated on the basis of the second signal, and switches a mode from the first mode to the second mode when a user manipulation event is detected in the first mode.
Abstract:
Interaction between a virtual object and the real space is to be presented in a preferred manner.In accordance with a user's viewing or finding of an actual object 151, the virtual object 150 corresponding to the actual object 151 appears. The actual object 151 includes output devices that generate outputs such as vibration, electric pulse, heat or cooling air, wind, sound, light, a transfer, and a jump. The actual object 151 performs reaction to action performed on the actual object 151 by the virtual object 150. Where interaction is conducted between the virtual object 150 and the actual object 151 in synchronization, a stronger impression of reality can be given to the user.
Abstract:
[Problem] To provide an information processing device, an information processing method, and a computer program that are capable of avoiding decrease of the display frame rate of a virtual object. [Solution] An information processing device including a control unit configured to sense a state that causes decrease of a display frame rate of a virtual object presented to a user and dynamically change a display detail level of the virtual object in accordance with a result of the sensing is provided.
Abstract:
Provided is an imaging apparatus including: an imaging unit; a display unit, through which at least a part of an imaging region of the imaging unit can be seen in a see-through manner and which is configured to display a stereoscopic image formed of a left eye image and a right eye image; a focal distance adjustment unit configured to adjust a focal distance of the imaging unit; and a display controller configured to generate the left eye image and the right eye image such that a display object indicating the focal distance is seen at a depth position corresponding to the focal distance and cause the display unit to display the left eye image and the right eye image.
Abstract:
[Object] To provide an information processing apparatus capable of executing calibration for improving accuracy of gaze detection without causing a user to feel stress. [Solution] Provided is an information processing apparatus, including: a marker control unit that changes, during calibration of an eyewear terminal, a display position of a point-of-regard marker displayed on a display unit of the eyewear terminal; a computational processing unit that computes an optical axis vector expressing a gaze direction of a user by a pupil-corneal reflection method, on a basis of a captured image that includes a user's eye imaged when the eye of the user wearing the eyewear terminal is irradiated with light from a light source, and the point-of-regard marker is displayed at a calibration point; and an evaluation unit that evaluates a variation of the optical axis vector computed for a plurality of the calibration points.
Abstract:
This information processing apparatus includes: a display panel; a sensor panel that is superimposed on the display panel and detects coordinates designated by a user; and a control unit that sets, with a region detectable by the sensor panel being a first region, a second region in at least a part of the first region and invalidates the coordinates detected is the second region.
Abstract:
An input device includes a detection unit, a first acquisition unit, a second acquisition unit, and a compensation unit. The detection unit is configured to detect an operation by a user for controlling an electronic device and output an operation signal corresponding to the operation. The first acquisition unit is configured to acquire the detected operation signal and a differential value of the operation signal. The second acquisition unit is configured to acquire a function defined by the differential value to compensate for a delay in response of the operation signal with respect to the operation by the user. The compensation unit is configured to compensate the operation signal with the acquired function.