Abstract:
An object classification unit 504 classifies objects placed in a virtual three-dimensional space into objects to be displayed on an optical transmission type HMD and objects to be displayed on a monitor 300 which is observed through the optical transmission type HMD. A video outputting unit 506 outputs a video of each object to the monitor 300 or the optical transmission type HMD based on a classification by the object classification unit 504.
Abstract:
An AR image generator 526 employs, as a marker, a subject imaged by an imaging element that images the subject existing in a region including the field of view of a user who wears an optically transmissive HMD and is provided for the optically transmissive HMD, and generates an AR image to be presented by the optically transmissive HMD. A proximity acquirer 560 acquires the distance in a virtual three-dimensional space between a first AR image associated with a first marker and a second marker or a second AR image associated with the second marker. An interaction producer 570 calculates an interaction caused with the first AR image or the second AR image based on the distance acquired by the proximity acquirer 560. The AR image generator 526 changes at least either one image of the first AR image or the second AR image according to the interaction calculated by the interaction producer 570.
Abstract:
An image acquisition unit acquires an image captured by a first imaging device provided in a HMD for presenting an image observed when a three-dimensional image in a virtual three-dimensional space is projected onto a real-world setting, the first imaging device being configured to visualize an area including a field of view of a user wearing the HMD. A marker detection unit detects a marker included in the image captured by the first imaging device and acquired by the image acquisition unit. The image acquisition unit acquires an image captured by a second imaging device having an angle of view that at least partially overlaps an angle of view of the first imaging device. If the marker is not captured in the image captured by the first imaging device, the marker detection unit detects the marker in an image captured by the second imaging device.
Abstract:
In a stereoscopic video observation device 200, an optically transmissive HMD 208 presents video observed when a three-dimensional image in a virtual three-dimensional space is projected into a real space. A transmittance changing section changes the transmittance of light that passes through the optically transmissive HMD 208. A shutter control section 220 sets a lower limit value of the light transmittance that can be changed by the transmittance changing section.
Abstract:
An image acquisition unit acquires an image captured by a first imaging device provided in a HMD for presenting an image observed when a three-dimensional image in a virtual three-dimensional space is projected onto a real-world setting, the first imaging device being configured to visualize an area including a field of view of a user wearing the HMD. A marker detection unit detects a marker included in the image captured by the first imaging device and acquired by the image acquisition unit. The image acquisition unit acquires an image captured by a second imaging device having an angle of view that at least partially overlaps an angle of view of the first imaging device. If the marker is not captured in the image captured by the first imaging device, the marker detection unit detects the marker in an image captured by the second imaging device.
Abstract:
An AR image generator 526 employs, as a marker, a subject imaged by an imaging element that images the subject existing in a region including the field of view of a user who wears an optically transmissive HMD and is provided for the optically transmissive HMD, and generates an AR image to be presented by the optically transmissive HMD. A proximity acquirer 560 acquires the distance in a virtual three-dimensional space between a first AR image associated with a first marker and a second marker or a second AR image associated with the second marker. An interaction producer 570 calculates an interaction caused with the first AR image or the second AR image based on the distance acquired by the proximity acquirer 560. The AR image generator 526 changes at least either one image of the first AR image or the second AR image according to the interaction calculated by the interaction producer 570.
Abstract:
In a media server, a registration processing block registers a client apparatus connectable to the media server and an information provision block provides information related with the registered client apparatus to an information processing apparatus. In the information processing apparatus, when an information acquisition block acquires information related with two or more client apparatuses, then a display processing block generates display data for displaying type identification information and device identification information for each client apparatus. The type identification information is a name of the client apparatus and the device identification information is a MAC address.
Abstract:
In a stereoscopic video observation device 200, an optically transmissive HMD 208 presents video observed when a three-dimensional image in a virtual three-dimensional space is projected into a real space. A transmittance changing section changes the transmittance of light that passes through the optically transmissive HMD 208. A shutter control section 220 sets a lower limit value of the light transmittance that can be changed by the transmittance changing section.
Abstract:
In a media server, a registration processing block registers a client apparatus connectable to the media server and an information provision block provides information related with the registered client apparatus to an information processing apparatus. In the information processing apparatus, when an information acquisition block acquires information related with two or more client apparatuses, then a display processing block generates display data for displaying type identification information and device identification information for each client apparatus. The type identification information is a name of the client apparatus and the device identification information is a MAC address.
Abstract:
An image acquisition unit acquires an image captured by a first imaging device provided in a HMD for presenting an image observed when a three-dimensional image in a virtual three-dimensional space is projected onto a real-world setting, the first imaging device being configured to visualize an area including a field of view of a user wearing the HMD. A marker detection unit detects a marker included in the image captured by the first imaging device and acquired by the image acquisition unit. The image acquisition unit acquires an image captured by a second imaging device having an angle of view that at least partially overlaps an angle of view of the first imaging device. If the marker is not captured in the image captured by the first imaging device, the marker detection unit detects the marker in an image captured by the second imaging device.