Abstract:
An apparatus, a method, and a computer program product for gesture recognition. The apparatus classifies a gesture based on a movement of a body part as detected by a primary sensor. The apparatus determine a reliability level of a secondary sensor and obtains corroborating information associated with the movement of the body part using the secondary sensor when the reliability level satisfies a criterion. The apparatus then confirms or negates the classification of the gesture based on the corroborating information. The secondary sensor may be a sensor already known to the apparatus, i.e., the sensor is currently being worn by the user, or it may be a sensor that is worn by a user at a later time. In the latter case, the apparatus detects for the presence of a new sensor, determines the gesture recognition capabilities of the new sensor and integrates the new sensor into the gesture recognition process.
Abstract:
Various arrangements for defining a marker are presented. A first defined marker presented by a public display device may be determined to be insufficient for use by a head mounted display. The first defined marker may be used as a reference point for positioning information for display by the head mounted display. In response to determining that the first defined marker is insufficient, a second marker displayed by the public display device may be defined. The second marker may have a display characteristic different from the first defined marker. The second defined marker may then be used as the reference point for positioning the information for display by the head mounted display. An indication of the second marker may be transmitted to the head mounted display.
Abstract:
Various arrangements for presenting private information are presented. Private information to be displayed via a head mounted display to a user may be identified. A marker displayed by a public display device may also be identified. This public display device may be visible in a vicinity of the user. The private information and an indication of the marker may be output to the head-mounted display of the user, such that the private information is displayed by the head-mounted display in relation to the marker displayed by the public display device.
Abstract:
Various arrangements are presented for positioning virtual objects displayed by a head-mounted display. A location of a person within a real-world scene may be determined. A virtual object may be displayed to a user such that the virtual object is superimposed over the face of the person.
Abstract:
Methods and devices enable displaying selected portions of one or more webpages in user defined view windows presented on a computing device display desktop. A selected webpage may be rendered into a full-sized render buffer in order for a rendering engine to render all the elements properly. One or more view windows are created on the display desktop that show user selected portions of the render buffer. In this manner users can select portions of one or more websites for presentation on their computing device desktop, position the selected portions at their preferred locations.
Abstract:
A mobile platform includes a microphone array and is capable of implementing beamforming to amplify or suppress audio information from a sound source. The sound source is indicated through a user input, such as pointing the mobile platform in the direction of the sound source or through a touch screen display interface. The mobile platform further includes orientation sensors capable of detecting movement of the mobile platform. When the mobile platform moves with respect to the sound source, the beamforming is adjusted based on the data from the orientation sensors so that beamforming is continuously implemented in the direction of the sound source. The audio information from the sound source may be included or suppressed from a telephone or video-telephony conversation. Images or video from a camera may be likewise controlled based on the data from the orientation sensors.
Abstract:
The disclosure is directed to content sharing. An aspect defines a filter having at least one parameter for receiving content and detects a content device. The content device is a peer device with sharable content. The aspect further queries the content device for desired content from the sharable content and receives the desired content from the content device. The desired content matches the at least one parameter.
Abstract:
Various arrangements are presented to facilitate the handoff of presentation of content between a head mounted display (HMD) and another presentation device, such as a television. For example, based upon separate events, video and audio being presented to a user via a presentation device may be handed off to an HMD that the user is wearing for continued presentation. In response to a first reference event occurring, the HMD may initiate continued presentation of the video content that was being viewed by the user on the presentation device. At a later time, in response to a second reference event, the HMD may initiate continued presentation of the audio content.
Abstract:
A device includes an image capture device configured to capture a first video. The device includes a memory configured to store one or more videos. The device further includes a processor coupled to the memory. The processor is configured to concatenate the first video and a second video to generate a combined video. The second video is included in the one or more videos or is accessible via a network. The second video is selected by the processor based on a similarity of a first set of characteristics with a second set of characteristics. The first set of characteristics corresponds to the first video. The second set of characteristics corresponds to the second video.
Abstract:
A mobile platform includes one or more haptic feedback elements that are positioned in regions of the mobile platform that are proximate to a facial region of a user. By way of example, the haptic feedback elements may be electric force elements that overlay a display. The mobile platform is capable of determining a current location and receiving a desired location, which may be, e.g., a location provided by the user, a location with superior signal strength or of another mobile platform. The mobile platform determines directions from the present location to the current location and translates the direction in to control signals. Haptic signals are produced to the facial region of the user by the haptic feedback elements in response to the control signals, thereby providing the directions to the user.