Naked-eye 3D image forming method and system
09900575 ยท 2018-02-20
Assignee
Inventors
Cpc classification
H04N13/302
ELECTRICITY
H04N2213/006
ELECTRICITY
H04N13/275
ELECTRICITY
International classification
Abstract
A naked-eye 3D image forming method. The method includes: determining an outline coordinate of display image of display device in a vertical plane; determining a coordinate of an observation point R including height h, and distance l; inclining the display device toward the horizontal plane to obtain a tilt angle ; according to coordinates of the two points of the original image on the horizontal plane, the height h, length l and angle to calculate an outline coordinate of a present image; according to all coordinate points contained by the outline coordinate of the preset image, the height h, the length l and the tilt angle to calculate projection coordinate points on the display screen; converting the projection coordinate points into digital signals and inputting to the image expanding control module such that the display device forms the preset image on an image on the vertical plane.
Claims
1. A naked-eye 3D image forming method, comprising: determining an outline coordinate of a display image of a display device in a vertical plane, wherein, the display image is an original image, and a middle point of a straight line formed by two points of the original image on a horizontal plane is an origin O; determining a coordinate of an observation point R which is calculated from the observation point R to the original image, wherein, the coordinate of the observation point R includes a height h with respect to the horizontal plane, and a distance 1 from the observation point R to the origin O; inclining the display device on the vertical plane toward the horizontal plane along a direction away from the display screen of the display device such that the display screen of the display device has a tilt angle with respect to the horizontal plane; based on coordinates of the two points of the original image on the horizontal plane, the height h, the length l and the tilt angle, calculating an outline coordinate of a present image formed by the original image on the vertical plane wherein coordinates of two points of the outline coordinate of the present image on the horizontal plane are the same as coordinates of the two points of the original image on the horizontal plane; based on all coordinate points contained by the outline coordinate of the preset image, the height h, the length l and the tilt angle , calculating projection coordinate points on the display screen projected by the all coordinate points contained by the outline coordinate of the preset image, wherein, a connection line between the observation point R and the outline coordinate of the present image is a straight line, and the outline coordinate of the present image is at the straight line; and converting the projection coordinate points on the display screen projected by the all coordinates contained by the outline coordinate of the preset image into digital signals and using the digital signals the display device forms the preset image on the vertical plane.
2. The naked-eye 3D image forming method according to claim 1, wherein, each of the projection coordinate points on the display screen corresponds to one pixel unit of the display device.
3. The naked-eye 3D image forming method according to claim 1, wherein, an outline of the original image is a rectangle, the outline coordinate of the original image is locations where four vertexes of the rectangle are located; the four vertexes along a clockwise direction are respectively a vertex A, a vertex B, a vertex C and a vertex D; wherein, coordinates of the vertex C and vertex D are predetermined fixed values and the origin O is located at the middle of the vertex C and vertex D.
4. The naked-eye 3D image forming method according to claim 3, wherein, an outline of an image displayed on the display screen after the display screen is tilted is a rectangle, an outline coordinate of the image displayed on the display screen after the display screen is tilted are locations where four vertexes of the rectangle are located and the four vertexes along a clockwise direction are respectively a vertex F, a vertex E, and the vertex C and the vertex D.
5. The naked-eye 3D image forming method according to claim 4, wherein, an outline of the preset image is a rectangle smaller than the size of the original image and the outline coordinate of the preset image are locations of four vertexes of the rectangle formed by the preset image.
6. The naked-eye 3D image forming method according to claim 5, wherein, the four vertexes of the outline coordinate of the preset image along a clockwise direction are respectively a vertex J (0, y2, z2), a vertex K (0, y2, z2) and the vertex C and the vertex D; a function y2 satisfies a following condition:
7. The naked-eye 3D image forming method according to claim 6, wherein, a projection coordinate point Z (x4, y4, z4) on the display screen projected by an arbitrary coordinate point Y (0, y3, z3) in the all coordinates contained by the outline coordinate of the preset image satisfies a flowing condition:
8. The naked-eye 3D image forming method according to claim 5, wherein, the observation point O, the point Y and the point Z are located on a same straight line.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) In order to more clearly illustrate the technical solution in the present invention or in the prior art, the following will illustrate the figures used for describing the embodiments or the prior art. It is obvious that the following figures are only some embodiments of the present invention. For the person of ordinary skill in the art without creative effort, it can also obtain other figures according to these figures.
(2)
(3)
(4)
(5)
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT
(6) The following content combines with the drawings and the embodiment for describing the present invention in detail. It is obvious that the following embodiments are only some embodiments of the present invention. For the person of ordinary skill in the art without creative effort, the other embodiments obtained thereby are still covered by the present invention.
(7) With reference to
(8) In the present embodiment, the horizontal plane 1 can be a bottom surface such as a platform in parallel with the ground. In the present embodiment, the horizontal plane 1 is a ground, and the vertical plane 2 is a wall or a frame. The present embodiment preferably selects a wall, and the naked-eye 3D image forming system is more suitable for an advertising application or a home application,
(9) In the present embodiment, the supporting body 4 includes a carrying plate 41 and a fixing plate 42 having an included angle with respect to the carrying plate 41. The fixing plate 42 is fixed to the vertical plane 2 and is in parallel with the vertical plane 2. The carrying plate 41 carries the display device 3, and the display screen 31 is in parallel with the carrying plate 41.
(10) With reference to
(11) Step S1: determining an outline coordinate of a display image of a display device in a vertical plane. Wherein, the display image is an original image. A middle point of a straight line formed by two points of the original image on the horizontal plane is an origin O.
(12) Step S2, determining a coordinate of an observation point R which is calculated from the observation point R to the original image. The coordinate of the observation point R includes a height h with respect to the horizontal plane, and a distance l from the observation point R to the origin. Wherein, the coordinate of the observation point R is (1, 0, h) which is a known fixed value. Wherein, a location of the observation point is an average location calculated based on a location of the display device and a range of possible observation points.
(13) Step S3, inclining the display device on the vertical plane toward the horizontal plane along a direction away from the display screen of the display device such that the display screen of the display device has a tilt angle with respect to the vertical plane. In the present embodiment the tilt angle is a known fixed value.
(14) With reference to
(15) Step S4, according to coordinates of the two points of the original image on the horizontal plane, the height h, the length l and the tilt angle to calculate an outline coordinate of a present image formed by the original image on the vertical plane. Wherein, coordinates of two points of the outline coordinate of the present image on the horizontal plane are the same as coordinates of the two points of the original image on the horizontal plane.
(16) Furthermore, an outline of an image displayed on the display screen after the display screen is titled is a rectangle, an outline coordinate of the image displayed on the display screen after the display screen is titled is locations where four vertexes of the rectangle are located. The four vertexes along a clockwise direction are respectively a vertex F, a vertex E, and the vertex C and the vertex D. Specifically, a coordinate of the vertex F is (x1, w1, z1) and a coordinate of the vertex E is (0, w, 0). Wherein, x1=dsin , z1=dcos .
(17) An outline of the preset image is a rectangle smaller than the size of the original image. An outline coordinate of the preset image are locations of four vertexes of the rectangle formed by the preset image. The four vertexes of the outline coordinate of the preset image along a clockwise direction are respectively a vertex J (0, y2, z2), a vertex K (0, y2, z2) and the vertex C and the vertex D. The function y2 satisfies a following condition:
(18)
the function z2 satisfies a following condition
(19)
Wherein, w is a coordinate value of the vertex C and the vertex D on the y-axis, z1 is a coordinate value of the vertex F and the vertex E on the z-axis. Therefore, according to the figure, from
(20)
to obtain from
(21)
from
(22)
to obtain
(23)
(24) With reference to
(25) Furthermore, a projection coordinate point Z (x4, y4, z4) on the display screen projected by an arbitrary coordinate point Y (0, y3, z3) in the all coordinates contained by the outline coordinate of the preset image satisfies a flowing condition:
(26)
Wherein, the coordinate point Y (0, y3, z3) is a known value. Specifically, from
(27)
deducing
(28)
Therefore, z4 is a known value, and from
(29)
so that the value of x4 can be obtained. Finally, x4 and z4 are known values to obtain
(30)
(31) Wherein, a connection line between the observation point R and an outline coordinate projected by the preset image is a straight line, and the outline coordinate of the preset image is located at the straight line.
(32) Step S6, converting the projection coordinate points on the display screen projected by the all coordinates contained by the outline coordinate of the preset image into digital signals and inputting the digital signals to the image expanding control module of the display device such that the display device forms the preset image on the vertical plane.
(33) In summary the naked-eye 3D image forming method of the present invention calculates a size of the present image on a plane (vertical plane) for normally displaying an image; after the display screen is titled, according a determined image forming range of a size of a preset image, projecting to the display screen, and converting to digital signals and inputting to the control module of the display device such that a displayed image in the display screen is coincided with the size of the preset image. Through a perspective principle, an image observed at an observation point neither a deformed image after titled nor a flat image, but a stereo image having a 3D effect. Accordingly, a 3D glasses is not required, and film attached naked-eye technology having higher cost is not required as well, a higher display effect can be achieved, and the present invention can be widely applied to advertising sites such as a mall.
(34) Furthermore, each of the projection coordinate points on the display screen corresponds to one pixel unit of the display device.
(35) Furthermore, the observation point O, the point Y and the point Z are located on a same straight line.
(36) The above embodiments of the present invention are not used to limit the claims of this invention. Any use of the content in the specification or in the drawings of the present invention which produces equivalent structures or equivalent processes, or directly or indirectly used in other related technical fields is still covered by the claims in the present invention.