Nova Patents
EP2321963B1

Scanned beam overlay projection

Abstract

This record has no abstract on file.

EP2321963B1, drawing sheet 1
Sheet 1 of 7

Term

2.8 yearsleft in the term

Expires 2 July 2029.

  1. Priority and filed
  2. Granted
  3. Today
  4. Expires

15 claims: 8 independent, 7 dependent

  1. 1
    A method (300, 700) comprising:scanning (310, 710) a light beam (124) in two dimensions across a projection surface (128) of an object, wherein the light beam (124) generates an image on the projection surface (128), wherein the projection surface (128) comprises a plurality of specific points;for each of the specific points on the projection surface (128): determining a timing when the scanned light beam (124) passes one of the specific points on the projection surface (128) of the object;and determining (340) a two-dimensional location of the one specific point on the projection surface (128) of the object by correlating the scan (126) of the light beam (124) with the timing when the scanned light beam (124) passed the one specific point;wherein image data corresponding to the image includes tags that allow tagged points within the image to be correlated with the determined two-dimensional locations of the specific points on the projection surface (128);and scaling and warping (350, 730) the image so that the locations of the tagged points in the image overlay corresponding ones of the determined two-dimensional locations of the specific points on the projection surface (128).
  2. 4
    The method (300, 700) of any of claims 1 to 3 wherein scaling and warping (350, 730) the image comprises warping the overlay to match a current perspective of the object.
  3. 5
    The method (300, 700) of any of claims 1 to 4 further comprising moving (740) a projector (512) that is scanning (310) the light beam (124), and updating the image.
  4. 6
    The method (700) of any of claims 1 to 5 further comprising:receiving at least one reflection from a reflective spot (634) of a probe (630) that signifies a location of the probe (630) relative to the object (650);receiving (750) parametric information from the probe (630);and determining a location of the reflective spot (634) within the scan (126).
  5. 8
    The method (300, 700) of any of claims 1 to 7 wherein the projection surface (128) is a display surface.
  6. 9
    An apparatus (100, 400, 510, 610) comprising:a scanning light beam projector (512) to generate an image on a projection surface (128) of an object by scanning (310, 710) a light beam in two dimensions across the projection surface (128), wherein the projection surface (128) comprises a plurality of specific points;at least one photodetector (134, 430, 432) to detect light (133) from the scanned light beam (124) that passes one or more of the specific points, wherein the apparatus (100, 400, 510, 610) is configured, for each of the one or more of the specific points: to determine a timing when the scanned light beam (124) passes the one of the specific points on the projection surface (128) of the object, and to determine (340) a two-dimensional location of the one specific point on the projection surface (128) of the object by correlating the scan (126) of the light beam (124) with the timing when the scanned light beam (124) passed the one specific point;wherein image data corresponding to the image includes tags that allow tagged points within the image to be correlated with the determined two-dimensional locations of the specific points on the projection surface (128);and an image warping engine (146) to scale and warp (350, 730) the image so that the locations of the tagged points in the image overlay corresponding ones of the determined two-dimensional locations of the specific points on the projection surface (128).
  7. 13
    The apparatus (100, 400, 510, 610) of any of claims 9 to 12 wherein the photodetector (134, 430, 432) comprises a photodiode (134) co-located with the scanning light beam projector (512).
  8. 14
    The apparatus (100, 400, 510, 610) of any of claims 9 to 12 wherein the photodetector (134, 430, 432) comprises at least one photodiode (430, 432) co-located with the projection surface (128).