Enhanced optical and perceptual digital eyewear
Abstract
Improved wearable optics is disclosed. The wearable optics comprises a frame member and a lens. The wearable optics also includes circuitry within the frame member for enhancing the use of the wearable optics. A system and method in accordance with the present invention is directed to a variety of ways to enhance the use of eyeglasses. They are: (1) media focals, that is, utilizing the wearable optics for its intended purpose and enhancing that use by using imaging techniques to improve the vision of the user; (2) telecommunications enhancements that allow the eyeglasses to be integrated with telecommunication devices such as cell phones or the like; and (3) entertainment enhancements that allow the wearable optics to be integrated with devices such as MP3 players, radios, or the like.
Claims
exact text as granted — not AI-modifiedWhat is claimed is:
1 . A wearable optics device comprising:
a lens; and a dynamic eye tracking mechanism in communication with the lens; wherein an optical parameter based operating system is utilized based upon the dynamic eye tracking.
2 . The wearable optics system of claim 1 , wherein the dynamic eye tracking is utilized to control the operating system.
3 . The wearable optics system of claim 1 , wherein applications are utilized to control sensors and the communication of the wearable optics device.
4 . The wearable optics system of claim 1 , wherein lenses is controlled by the operating system.
5 . The wearable optics device of claim 1 , wherein the lens includes a plurality of layers.
6 . The wearable optics system of claim 1 , wherein lens layer drivers and an eye cursor are controlled by the operating system.
7 . A wearable optics device comprising:
a lens; and
a dynamic eye tracking mechanism in communication with the lens; wherein shading or inverse shading is utilized based upon the dynamic eye tracking.
8 . The wearable optics device of claim 7 , wherein inverse shading is provide when viewing a display.
9 . The wearable optics device of claim 7 , wherein inverse shading is provided by a polarized filter.
10 . The wearable optics device of claim 7 , wherein algorithms for shading and inverse shading are provided within the wearable optics device.
11 . The wearable optics device of claim 7 , wherein algorithms are provided to transform non-visual spectrum to visible information.
12 . The wearable optics device of claim 8 , wherein the display is utilized with any of a smartphone, personal computer, laptop, desktop or portable device.
13 . The wearable optics device of claim 7 , wherein an object is unshaded but the area outside of the object is shaded.
14 . The wearable optics device of claim 7 , wherein object recognition is utilized.
15 . The wearable optics device of claim 7 , wherein if ambient light is above some predetermined value then you shade.
16 . The wearable optics device of claim 7 , wherein each lens has its own inverse shading.
17 . The wearable optics device of claim 10 , wherein translucency shading is provided for reading material.
18 . A method comprising:
utilizing dynamic eye tracking with a wearable optics device; wherein a perceptual optimization is utilized based upon the dynamic eye tracking.
19 . The method of claim 18 which includes providing an enhancement utilizing objective and subjective quality standards based upon perceptual parameters.
20 . The method of claim 19 , wherein the perceptual parameters include any and any combination of optical expression, voice, brain wave, environmental, audio, video, navigational, augmented reality, algorithmic, spatial, cognitive, interpretive.
21 . The method of claim 18 , wherein the wearable optics device controls any or any combination of mimics, amplifies, or expands a user perceptual physiology utilizing perceptual parameters.
22 . The method of claim 20 , wherein the optical expressions are images.
23 . A wearable optics device comprising:
a lens; and
a dynamic eye tracking mechanism in communication with the lens; wherein an augmented reality overlay is utilized based upon the dynamic eye tracking.
24 . The wearable optics device of claim 23 , wherein an overlay translation is augmented reality overlay in real time
25 . The wearable optics device of claim 23 , wherein an overlay translation is provided in the wearable optics device using line of sight or focal length of the lens of the user to the object to provide an augmented reality overlayJoin the waitlist — get patent alerts
Track US2015131159A1 — get alerts on status changes and closely related new filings.
We store only your email — no account needed. See our privacy policy.