Optical location measuring system
An optical location measuring system is provided including taking a reference image, taking a later image, comparing the reference image and the later image to determine a number of integer and non-integer pixels of movement, and taking a new reference image when the number of pixels of movement is substantially an integer number of pixels.
1 . An optical location measuring system comprising:
taking a reference image;
taking a later image;
comparing the reference image and the later image to determine a number of integer and non-integer pixels of movement; and
taking a new reference image when the number of pixels of movement is substantially an integer number of pixels.
2 . The system as claimed in claim 1 further comprising determining when the movement of the later image is insufficiently moved from the reference image to not take the new reference image.
3 . The system as claimed in claim 1 further comprising determining when the movement of the later image is sufficiently moved from the reference image to take the new reference image.
4 . The system as claimed in claim 1 further comprising continuously taking reference images, taking later images, and comparing the reference images and later images.
5 . The system as claimed in claim 1 further comprising measuring the movement between the reference image and the new reference image.
6 . The system as claimed in claim 1 comprising:
moving an object; and
determining the amount of movement of the object.
7 . The system as claimed in claim 6 further comprising determining when the movement of the later image is more than 30% of the size of the reference image to take the new reference image.
8 . The system as claimed in claim 6 further comprising determining when the movement of the later image is more than 60% of the size of the reference image to take the new reference image.
9 . The system as claimed in claim 6 further comprising continuously taking reference images, taking later images, comparing the reference images and later images, and taking new reference images.
10 . The system as claimed in claim 6 further comprising measuring the number of pixels moved between the reference image and the new reference image.
11 . An optical location measuring system comprising:
an optical sensor for taking a reference image and a later image; and
a control processor for comparing the reference image and the later image to determine a number of integer and non-integer pixels of movement and for instructing the optical sensor to take a new reference image when the number of pixels of movement is substantially an integer number of pixels.
12 . The system as claimed in claim 11 wherein the control processor is for determining when the movement of the later image is insufficiently moved from the reference image to not take the new reference image.
13 . The system as claimed in claim 11 wherein the control processor is for determining when the movement of the later image is sufficiently moved from the reference image to take the new reference image.
14 . The system as claimed in claim 11 wherein the control processor is for continuously causing the optical sensor to take reference images, take later images, and compare the reference images and later images.
15 . The system as claimed in claim 11 wherein the control processor is for measuring the movement between the reference image and the new reference image.
16 . An optical location measuring system comprising:
a motor for moving an object;
a computer for controlling the motor;
an optical sensor for taking a reference image and a later image of the object; and
a control processor for comparing the reference image and the later image to determine a number of integer and non-integer pixels of movement and for instructing the optical sensor to take a new reference image when the number of pixels of movement is substantially an integer number of pixels, the control processor for determining the amount of movement of the object and providing the amount of movement to the computer.
17 . The system as claimed in claim 16 wherein the control processor is for determining when the movement of the later image is more than 30% of the size of the reference image to take the new reference image.
18 . The system as claimed in claim 16 wherein the control processor is for determining when the movement of the later image is more than 60% of the size of the reference image to take the new reference image.
19 . The system as claimed in claim 16 wherein the control processor is for continuously taking reference images, taking later images, comparing the reference images and later images, and taking new reference images.
20 . The system as claimed in claim 16 wherein the control processor is for measuring the number of pixels moved between the reference image and the new reference image.