Calibration method for a camera which monitors a target board
10600209 ยท 2020-03-24
Assignee
Inventors
Cpc classification
G06T7/80
PHYSICS
F41J5/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
A63B67/06
HUMAN NECESSITIES
G06T3/20
PHYSICS
F41J5/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
G06T7/80
PHYSICS
F41J5/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
G06T3/20
PHYSICS
A63B67/06
HUMAN NECESSITIES
F41J5/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A calibration method for a camera which monitors a target board is disclosed, comprising steps: using the camera to capture a target image corresponding to the target board; using rotation and translation to align the target image to a reference standard and acquire the corresponding relationship of the target image and the target board; defining a region of interest above the target image; using at least one positioning marker in at least two positions of the target board, whose actual space coordinates are known, and using the camera to acquire at least two image coordinates of the positioning markers in the region of interest; and using the known actual space coordinates and the acquired image coordinates to work out the exact position of the camera. Thereby, the positions of the cameras can be used to correctly determine the positions of darts.
Claims
1. A calibration method for a camera which monitors a target board, which respectively calibrates at least two cameras disposed in a periphery of a target board having a plurality of known actual space coordinates, comprising steps: using said camera to acquire a target image corresponding to said target board; using rotation and translation to adjust a relative position of said target image and a reference standard to acquire a corresponding relationship of said target image and said target board and define a region of interest (ROI) above said target image according to the corresponding relationship of said target image and said target board; and utilizing at least one positioning marker in at least two positions of said target board, which have said known actual space coordinates, using said camera to acquire at least two image coordinates of said positioning markers with respect to said region of interest, and using at least two said known actual space coordinates and at least two said image coordinates to work out an exact position of said camera.
2. The calibration method for a camera which monitors a target board according to claim 1, wherein said reference standard is a reference line or at least two reference points.
3. The calibration method for a camera which monitors a target board according to claim 2, wherein in said step of using rotation and translation to adjust said relative position of said target image and said reference standard, a horizontal position and an angle of said reference line are adjusted to make said reference line coincide with a top edge of said target image to acquire said corresponding relationship of said target image and said target board and define said region of interest.
4. The calibration method for a camera which monitors a target board according to claim 2, wherein in said step of using rotation and translation to adjust said relative position of said target image and said reference standard, a horizontal position and an angle of said target image are adjusted to make a top edge of said target image coincide with said reference line to acquire said corresponding relationship of said target image and said target board and define said region of interest.
5. The calibration method for a camera which monitors a target board according to claim 2, wherein in said step of using rotation and translation to adjust said relative position of said target image and said reference standard, a coordinate system of said target image is adjusted to select said at least two reference points to acquire said corresponding relationship of said target image and said target board and define said region of interest.
6. The calibration method for a camera which monitors a target board according to claim 1, wherein said at least one positioning marker is sequentially inserted into said at least two positions of said target board, which have said known actual space coordinates, to acquire said image coordinates in sequence.
7. The calibration method for a camera which monitors a target board according to claim 1, wherein while said at least one positioning marker has a quantity of more than two, said positioning markers are simultaneously inserted into different positions of said target board, which have said known actual space coordinates, to acquire more than two said image coordinates at the same time.
8. The calibration method for a camera which monitors a target board according to claim 1, wherein said target board is an archery target board or a dartboard.
9. The calibration method for a camera which monitors a target board according to claim 8, wherein said dartboard is a dartboard of hard-type darts or a dartboard of soft-type darts.
10. The calibration method for a camera which monitors a target board according to claim 1, wherein said positioning marker is inserted into said target board fixedly in advance for calibration of said cameras.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE INVENTION
(8) The present invention proposes a method to calibrate a camera which monitor a target board before a dart-like game is scored. Refer to
(9) Refer to
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(11) In the rotation and translation for calibration in
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(13) In the above embodiment, a plurality of positioning markers is simultaneously inserted into the target board to acquire the same number of sets of image coordinates at the same time. In another embodiment, one positioning marker is inserted into at least two positions having known actual space coordinates in sequence to acquire corresponding image coordinates one by one, which can also acquire sufficient image coordinates for working out the position of the camera. In some embodiments, the positioning markers are sequentially or simultaneously inserted into the target board while calibration is intended. In some embodiments, the positioning markers are fixedly inserted in the target board in advance before calibrations; the other steps of calibration are the same as those mentioned before and will not repeat herein. The present invention does not limit that the positioning marker must be a needle-like object. Other labels can also be used as the positioning markers as long as they can be discriminated in images.
(14) In the cases that cameras are used to learn the impact points of arrows or darts for game scoring, it is a critical step to align the cameras parallel to the target board. The method of the present invention can indeed practice the critical step. The method of the present invention simplifies the 3D space relationship into a 2D problem and uses known actual space coordinates and acquired image coordinates to work out the exact positions of the cameras. Thereby, the accurate positions of the cameras can be used to correctly determine the positions of darts. Thus is avoided the scoring error and increased the scoring accuracy in dart games.
(15) The embodiments have been described above to demonstrate the technical thoughts and characteristics of the present invention to enable the persons skilled in the art to understand, make, and use the present invention. However, these embodiments are only to exemplify the present invention but not to limit the scope of the present invention.