Abstract:
This disclosure concerns an interactive head-mounted eyepiece with an integrated processor for handling content for display and an integrated image source for introducing the content to an optical assembly through which the user views a surrounding environment and the displayed content, and an LED lighting system coupled to a light transmissive illumination system of the optical assembly. An optical imperfection of the illumination system directs light from the LED lighting system to uniformly irradiate a reflective image display to produce an image that is reflected through the illumination system to provide the displayed content to the user.
Abstract:
This disclosure concerns an interactive head-mounted eyepiece with an integrated processor for handling content for display and an integrated image source for introducing the content to an optical assembly through which the user views a surrounding environment and the displayed content, wherein the optical assembly comprises a light transmissive wedge-shaped illumination system with an LED lighting system coupled to an edge of the wedge, and wherein an angled surface of the wedge directs light from the LED lighting system to uniformly irradiate a reflective image display to produce an image that is reflected through the illumination system to provide the displayed content to the user.
Abstract:
This disclosure concerns an interactive head-mounted eyepiece with an integrated processor for handling content for display and an integrated image source for introducing the content to an optical assembly through which the user views a surrounding environment and the displayed content. The eyepiece also includes one or more range determination sensors and/or location sensors. Information relating to a distance to a real world object in the surrounding environment is extracted by the integrated processor from the sensors and the integrated processor determines, based on the location and distance, a placement position for the content within a field of view of the optical assembly.
Abstract:
Multiple images are captured where the exposure times for some of the images overlap and the images are spatially overlapped. Charge packets are transferred from one or more portions of pixels after particular integration periods, thereby enabling the portion or portions of pixels to begin another integration period while one or more other portions of pixels continue to integrate charge. Charge packets may be binned during readout of the images from the image sensor. Comparison of two or more images having different lengths of overlapping or non-overlapping exposure periods provides motion information. The multiple images can then be aligned to compensate for motion between the images and assembled into a combined image with an improved signal to noise ratio and reduced motion blur.
Abstract:
A dual sided viewing panel and a method of capturing and displaying images, is disclosed. The dual sided viewing panel includes a first viewing panel and a second viewing panel. The first and second viewing panels are controllable by a control device to capture an image and display an image. The first and second viewing panels are positioned in an aligned back to back relationship to each other. In a method, a first image is captured by the first viewing panel and a second image is captured by the second viewing panel. The first captured image is displayed on the second viewing panel and the second captured image is displayed on the first viewing panel. The viewing direction of the first viewing panel is opposed to the viewing direction of the second viewing panel.
Abstract:
Multiple images are captured where the exposure times for some of the images overlap and the images are spatially overlapped. Charge packets are transferred from one or more portions of pixels after particular integration periods, thereby enabling the portion or portions of pixels to begin another integration period while one or more other portions of pixels continue to integrate charge. Charge packets may be binned during readout of the images from the image sensor. Comparison of two or more images having different lengths of overlapping or non-overlapping exposure periods provides motion information. The multiple images can then be aligned to compensate for motion between the images and assembled into a combined image with an improved signal to noise ratio and reduced motion blur.
Abstract:
A method of operating a switchable head-mounted display apparatus includes the steps of providing a head-mounted display that includes a switchable viewing area that is switched between a transparent viewing state and an information viewing state, switching the viewing state to an intermediate state from the transparent viewing state or the information viewing state, and switching the intermediate state to the transparent viewing state or the information viewing state.
Abstract:
A method for unobtrusive screening the well-being of a person using a plurality of sensing devices, including detecting the presence of a person; identifying and tracking the person; using sensing devices, which includes at least one camera, to unobtrusively sense one or more body parameters of the person; calculating and storing wellness parameters, which are derived from the sensed body parameter data; and automatically evaluating the well-being of the person based on current and prior semantic data including comparing the wellness parameters to previously determined wellness parameters for that person.
Abstract:
A dual sided viewing panel and a method of capturing and displaying images, is disclosed. The dual sided viewing panel includes a first viewing panel and a second viewing panel. The first and second viewing panels are controllable by a control device to capture an image and display an image. The first and second viewing panels are positioned in an aligned back to back relationship to each other. In a method, a first image is captured by the first viewing panel and a second image is captured by the second viewing panel. The first captured image is displayed on the second viewing panel and the second captured image is displayed on the first viewing panel. The viewing direction of the first viewing panel is opposed to the viewing direction of the second viewing panel.
Abstract:
A dual sided viewing panel and a method of capturing and displaying images, is disclosed. The dual sided viewing panel includes a first viewing panel and a second viewing panel. The first and second viewing panels are controllable by a control device to capture an image and display an image. The first and second viewing panels are positioned in an aligned back to back relationship to each other. In a method, a first image is captured by the first viewing panel and a second image is captured by the second viewing panel. The first captured image is displayed on the second viewing panel and the second captured image is displayed on the first viewing panel. The viewing direction of the first viewing panel is opposed to the viewing direction of the second viewing panel.