Abstract:
There is provided an information processing apparatus including a sight line detecting unit configured to detect a sight line of an operator on a display screen, a detection accuracy determining unit configured to determine a detection accuracy of the sight line detected by the sight line detecting unit, and a display control unit configured to differentiate a display form of a display object displayed on the display screen, depending on the detection accuracy determined by the detection accuracy determining unit.
Abstract:
More natural communication and interaction are enabled. The autonomous system (100) includes an action decision unit (140) that decides, based on an attention level map (40) in which an attention level indicating the degree of attention for each position in a predetermined space is set, the action which a drive mechanism is caused to perform.
Abstract:
There is provided an information processing apparatus, an information processing method, a program, and an autonomous behavior robot control system that enable an autonomous behavior robot to perform a behavior more suitable for the surrounding environment. The information processing apparatus includes a map generating unit and a behavior control signal generating unit. The map generating unit generates a spatio-temporal map on the basis of data obtained by a data obtaining unit of an autonomous behavior robot, the autonomous behavior robot including the data obtaining unit that obtains data related to surrounding environment information. The behavior control signal generating unit generates a behavior control signal for the autonomous behavior robot to move and obtain data from the data obtaining unit in order to obtain information to be added to the spatio-temporal map.
Abstract:
There is provided an eyeball observation device, which can stably detect a line of sight, the eyeball observation device including: at least one infrared light source configured to radiate polarized infrared light onto an eyeball of a user; and at least one imaging device configured to capture an image of the eyeball irradiated with the polarized infrared light and to be capable of simultaneously capturing a polarization image with at least three directions.