Abstract:
In an aspect of the invention, a projector apparatus (20) with a distance image acquisition device includes a projection image generation unit (28), a difference value acquisition unit (101) that acquires a difference value between distance information of a first distance image acquired at a first timing and distance information of a second distance image acquired at a second timing, a determination unit (103) that determines whether the body to be projected is at a standstill on the basis of the difference value acquired by the difference value acquisition unit (101), a projection instruction unit (105) that outputs a command to project an image generated by the projection image generation unit (28) to the body to be projected, and a projection control unit (107) that controls a projection operation of the projector apparatus (20) on the basis of the projection command output from the projection instruction unit (105).
Abstract:
The invention provides a projector apparatus with a distance image acquisition device and a projection mapping method that can project an image focused on the entire projection object even in a case in which there is a difference in distance to the projection object and the projection object moves. Two projector apparatuses with a TOF camera, that is, a first projector apparatus with a TOF camera including a first projector apparatus for a far distance and a first TOF camera that acquires a distance image of a far projection object and a second projector apparatus with a TOF camera including a second projector apparatus for a near distance and a second TOF camera that acquires a distance image of a near projection object can project a projection image for a far distance and a projection image for a near distance which are focused on the entire projection object even in a case in which there is a difference in distance to the projection object and the projection object moves. In addition, a first light source and a second light source of the projector apparatuses are pulse-driven to function as light sources of the first and second TOF cameras.
Abstract:
A tablet terminal comprises a touch panel which functions as a display for displaying a screen on a front face of a main body, and a controller which detects a contact to a touch sensor using a contact detection signal which the touch sensor outputs and executes control assigned to a point where the contact is detected after the point where the contact is detected is changed to a non-contact state.
Abstract:
An electronic book reader includes a touchscreen display device disposed on a front surface of a housing. A storage medium stores image sequence information of plural images of a predetermined sequence. A contact surface portion is disposed on a side surface of the housing. A touch sensor detects contact with the contact surface portion. There is a CPU for display control of displaying the image sequence information on the touchscreen display device. An information processing device is connected between the storage medium and the CPU, for processing the image sequence information according to contact information from the touch sensor. The contact information is information of a rubbing movement in contact with the contact surface portion. The information processing device processes the image sequence information for forward or backward page turning according to a direction of the rubbing movement.
Abstract:
A driving assistance device includes a gaze detection unit that detects a gaze of a driver of a vehicle, an imaging selection unit that selects a first imaging unit corresponding to a direction of the gaze from among a plurality of first imaging units that image the periphery of the vehicle, and a display control unit that processes first captured image data obtained by imaging using the selected first imaging unit on the basis of second captured image data obtained by imaging using a second imaging unit that images the front of eyes of the driver and displays an image based on the first captured image data after the processing on a transmission type display unit fixed at the front of the eyes of the driver of the vehicle.
Abstract:
A received light signal of the measurement light which is reflected from the subject and is then incident on a distance image sensor is acquired from the distance image sensor and a distance image is generated on the basis of the acquired received light signal. The position of a leading end of a medical instrument inserted into the subject is acquired. A leading end position image indicating the position of the leading end of the medical instrument in the subject is acquired. A projection image which is projected to the subject and corresponds to a surface shape of a corresponding part of the subject corresponding to the position of the leading end is generated from the leading end position image, on the basis of the shape of the subject detected from the distance image and the position of the leading end. The projection image is projected to the corresponding part.
Abstract:
A server unit includes a browsing request receiving device that receives a browsing request for a piece of content including one or multiple pages from a display unit; a user discriminating device that discriminates a user of the display unit issuing the browsing request; a delivery information generating device that generates a piece of delivery information by adding a piece of scenario information for each model representing a transition of a display range within each page of the content to which the browsing request is issued from the display unit, when an identical user discriminated by the user discriminating device has multiple display units of different models, the delivery information generating device generating the delivery information the content of which has added thereto multiple pieces of scenario information; and a delivery device that delivers the delivery information.