EP3552534A2

Remapping methods to reduce distortions in images

Abstract

The present invention provides software, methods, and systems for characterizing an actual scan pattern (60) of a scanning beam device (10). The characterization of the actual scan pattern (60) may be used in an image remapping method and/or a drive signal remapping method to reduce distortions in an image.

EP3552534A2, drawing sheet 1
Sheet 1 of 12

Term

Term ended

Projected expiry passed 1 October 2024, 2 years ago.

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11 claims: 2 independent, 9 dependent

  1. 1
    An image projection device comprising:a base station (12) including a light source (28);a cantilevered optical fiber (50), wherein the cantilevered optical fiber is calibrated to vibrate at a rate of vibration within a Q factor of a resonant frequency and to project modulated light onto a surface to form an image;a controller (20) disposed in the base station, wherein the controller is coupled to the cantilevered optical fiber to control the rate of vibration of the cantilevered optical fiber and to control the projection of the modulated light;and a memory element (24) wherein the memory element is coupled to the controller to provide instructions for controlling the cantilevered optical fiber.
  2. 7
    A method of projecting an image comprising:generating light with a light source (28);transferring the light from the light source to a cantilevered optical fiber, wherein the light source and the cantilevered optical fiber are optically coupled;calibrating the cantilevered optical fiber, wherein calibrating the cantilevered optical fiber at least partially accounts for a difference between an actual position and an expected positions of the cantilevered optical fiber;and projecting an image with the cantilevered optical fiber, wherein the cantilevered optical fiber is coupled to vibrate within a Q factor of a resonant frequency, and wherein the cantilevered optical fiber modulates the light to project the light onto a surface to form an image.