Helmet mounted display
Abstract
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- Priority and filed
- Published
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14 claims: 12 independent, 2 dependent
- 199420/5 CLAIMS 1. Head mounted display apparatus comprising:a surface mounted on an observer and having an at least partially reflecting portion in the view of the observer: and an optical projector for rejecting an image for reflection from the at least partially reflecting portion including: a display source whereon an image is formed;and an optical system for focusing the image at separate sagittal and tangential foci between the display source and the at least partially reflecting portion, wherein the at least partially reflecting portion has a substantially spherical shape, the image is reflected therefrom at an angle to the radius thereof and the sagittal and tangential foci of the partially reflective portion correspond, respectively to the sagittal and tangential foci ofthe image.
- 5Apparatus according to any of the preceding claims including a focusing element situated at the sagittal focus.
- 7Apparatus according to any of the preceding claims and including at least one folding mirror in the optical path of the image to allow for a more compact projection system. ι
- 8Apparatus according to any of the preceding claims wherein the at least partially reflecting portion comprises a partially reflecting semi-transparent portion in the view of the observer and wherein the semi-transparent portion has a relatively higher reflectivity in a central area thereof and a relatively lower reflection in an annular area outside the central area.
- 9Head mounted display apparatus comprising:a surface mounted on an observer and having an at least partially reflecting portion in the view of the observer;and an optical projector for projecting an image for the reflection from the at least partially reflecting portion including: a display source whereon an image is formed;and an optical system for focusing the image on separate sagittal and tangential focal surfaces between the display source and the at least partially reflecting portion, wherein the at least partially reflecting portion has a spherical shape, the image is reflected therefrom at an angle to the radius thereof and the sagittal and tangential foci of the partially reflecting portion substantially coincide, respectively, with the sagittal and tangential foci of the image.
Independent claims12
30 paragraphs in 4 sections, as filed
099,420/2
HELMET MOUNTED DISPLAY mop >y nixin ΠΑίχη ELBIT LTD. 0:12015 12015S03 1-948
HELMET MOUNTED DISPLAY
This displays.
Helmet viewing of FIELD OF THE INVENTION invention relates to the field of helmet BACKGROUND OF THE INVENTION displays which allow for the simultaneous information and/or images generated by a computer or other source together with and/or superimposed on a direct viewing of a distant scene are well known.
One type of such apparatus provides a small, flat, usually partially reflecting, mirror which projects an image from a CRT toward the eye of a viewer. Examples of such apparatus are described in U.S. Patent 4,364,636 to Ellis and U.S. Patent 4,722,601 to McFarlane. U.S. Patent 4,026,641 describes a system in which the CRT display is projected at an oblique angle onto a toric display reflector which reflects the image toward the eye of the observer. A second type of apparatus provides for the image to be projected off a semi-reflecting portion of the visor of the helmet. In general, if such reflection is made at an oblique angle off a spherical surface, the image, as viewed by the observer, is distorted. In order to at least partially relieve this problem, U.S. Patent 4,761,056 to Evans et al. provides a parabolic semi-reflecting portion on the helmet visor and a parabolic mirror for reflecting the image onto the semi-reflecting portion. Similarly, U.S. Patent 3,787,109 to Vizenor and U.S. Patent 3,923,370 to Mostrom are typical of systems in which the image is reflected off a semi-reflecting parabolic portion of a visor to the eye of the observer. U.S. Patent 4,878,046 to Smith interposes a beam splitter mirror in the line of view of the observer, so that the reflection from the semi-transparent surface, be it spherical or planar, is not distorted. U.S. Patent 4,081,209 describes a system in which the image of a LED display is reflected from a spherical semireflecting surface molded into the surface of the helmet - 1 - 12015S03 1-948 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 visor. A prism, placed in the path of the projection from the LED display to the spherical surface, is used to compensate for spherical and chroma aberrations caused by the off-axis reflection from the spherical surface and an additional cylindrical element is added to compensate for astigmatic effects. In this system the image is projected toward the eye from the source without any intervening focus. Such systems appear to be unable to compensate for a field of view of more than a few degrees, even with the addition of additional elements. Apparently in order to allow for compensation by this method, the semi-reflecting section is separate from, and at an angle with, the rest of the visor.
None of the abovementioned apparatus deal with a further problem of such heads-up helmet mounted display systems, namely the effect of the edge of the semitransparent surface, which appears to be present in all commercial systems. While the superimposition of data or other images on the directly viewed scene is well-received, the effect of the edge of the semi-reflecting region is annoying to most users. For most of the above systems this effect is unavoidable since there is a physical edge or sharp change in curvature at the edge of the semitransparent region. U.S. Patent 3,302,515 describes a projection mirror where the reflectivity of the surface decreases from the edges to the center so as to provide a uniformly lighted field.
SUMMARY OF THE INVENTION
It is an object of one aspect of the present invention to supply an improved, relatively wide angle substantially non-distorting, heads-up projection system for a helmet utilizing a spherical semi-reflecting portion of the visor of the helmet.
It is an object of one aspect of the invention to provide an improved helmet mounted display using a semireflecting portion of the visor, wherein having substantially no discernible edge effect. - 2 - 12015so3 99420/2 • 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38
There is therefore provided, in a preferred embodiment of the invention, a helmet mounted display including a visor attached to the helmet and having a partially reflecting semi-transparent portion in the view of the wearer and an optical projector for projecting an image onto the semi-transparent portion, wherein the semitransparent portion has a relatively higher reflectivity in a central area thereof and a relatively lower transparency in an annular area outside the central area.
In a preferred embodiment of the invention, the reflectivity of the annular area decreases as the distance from the central area increases.
Preferably the annular area intersects an angle of at least about 25°, more preferably at least about 50°, and most preferably at least about 100 mrad when viewed by the wearer.
There is further provided in a preferred embodiment of the invention a helmet mounted display including a visor attached to the helmet and having a partially reflecting semi-transparent portion in the view of the wearer and an optical projector for projecting an image onto the semitransparent portion. The optical projector includes an image forming surface whereon an image is formed and an optical system for focusing the image at separate sagittal and tangential foci between the image forming surface and the semi-transparent portion.
In a preferred embodiment of the invention the optical projector includes a toroidal mirror. Preferably, the projector includes a focusing element placed between the sagittal and tangential foci. More preferably one face of the element is placed at the sagittal focus and the second face is placed at the tangential focus. Alternatively, the optical projector includes a focusing element placed at the tangential focus and/or a focusing element placed at the sagittal focus.
Preferably the semi-transparent portion has a substantially spherical shape, the image is reflected therefrom at an angle to the radius therefrom and the - 3 - 12015S03 1-948 sagittal and tangential foci of spherical surface correspond to the sagittal and tangential foci of the image.
In a further preferred embodiment of the invention, there is provided a helmet mounted display including a visor attached to the helmet and having a substantially spherical partially reflecting semi-transparent portion in the view of the wearer and an optical projector,·z for projecting an image onto the semi-transparent portion. The optical projector includes an image-forming surface whereon an image is formed and a toroidal mirror for reflecting the image received from the image forming surface. —*·-
In yet a further preferred embodiment of the invention there is provided a helmet mounted display including a visor attached to the helmet and having a partially reflecting semi-transparent portion in the view of the wearer and an optical projector for projecting an image onto the semi-transparent portion. The projector includes an image-forming surface whereon an image is formed, . a toroidal mirror for reflecting the image from the image forming surface, an imaging lens system, preferably an astigmatic lens system for receiving the image from the toroidal mirror, and a prismatic lens for receiving the image from the astigmatic lens for projection onto the semi-transparent surface.
There is further provided, in a preferred embodiment of the invention, a helmet including a helmet mounted display of the invention. 4 12015S03 1-948 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38
BRIEF DESCRIPTION OF THE DRAWINGS
These and other objects, features and advantages of the invention will become more apparent in view of the detailed description of a preferred embodiment of the invention as illustrated by the accompanying drawings in which:
Figs. 1 and 2 are respective front and side views of a helmet incorporating a helmet mounted display in accordance with a preferred embodiment of the invention;
Fig. 3 is an unfolded drawing of the optical path of a display system of the preferred embodiment of Figs. 1 and 2;
Figs. 4 and 5 are schematic diagrams illustrating one method for producing a semi-reflecting surface according to a preferred embodiment of the invention; and
Figs. 6 and 7 are schematic diagrams illustrating a alternative preferred method for producing a semireflecting surface according to a preferred embodiment of the invention.
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT
Figs. 1 and 2 show respective front and side views of a helmet 10 in accordance with a preferred embodiment of the invention. Helmet 10 comprises a body portion 12 of standard construction and a mostly transparent visor 14 rotationally attached to the sides of body portion 12 such that it can be rotated upwards and out of view of the wearers. Visor 14 has, preferably, a substantially spherical shape and includes a partially-reflecting semitransparent spherical portion 16, which will be described in more detail below, placed observer. in the line of sight of the Mounted in a housing 19 above the visor is a projection system 18 for projecting information onto the semi-transparent portion 16 to form a helmet mounted display enabling the wearer to view the projection from system 18 superimposed on the outside scene. Projection system 18 includes a display 20 having a substantially flat display surface 22. Display 20 can be for example a CRT - 5 - 99420/4 display, a LED display, a plasma display, an electroluminescent display, a liquid crystal display, or any other suitable display. Light from an image which generated at display surface 22 is reflected from a toroidal folding mirror 24, which may be either a front surface mirror or a reflection coating placed on the back surface of a suitable lens, via a lens 26 to a folding mirror 28. The image after reflection from a mirror 28, passes through a preferably prismatic lens 30 to semitransparent portion 16 whence it is reflected toward the eye of the wearer of the helmet. The path of the central ray of the image is shown in Fig. 1 and 2 by dotted line 32.
As is well known, images which are reflected off-axis from a spherical surface have both astigmatic and spherical aberrations. An unfolded drawing of the optical path of the projection system is shown in Fig. 3 Lens 30 comprises a central, preferably prismatic portion 30A and two spherical focusing portions 30B and 30C. It should be noted that, in a preferred embodiment of the invention, one of the spherical focusing surfaces is placed at or near the tangential focus T of portion 16 and the other spherical focusing surface is placed at or near the sagittal focus S of the portion 16. This placement allows for separate adjustment of the focal lengths of the two reflection axes. Lens 30 acts as field optics for the system and partially corrects for the astigmatism caused by off-axis reflection from portion 16.
Lens 26 is designed to correct for some of the spherical and chroma aberrations cause by the oblique reflection from spherical portion 15.
Finally, torroidal mirror 24 corrects for the stigmatic effect of the off-axis reflection from the portion 16, i.e., it focuses the light from surface 22 at the tangential and sagittal focuses of portion 16.
As is more clearly seen in Fig. 3, prismatic lens 30 and lens 26 are shifted with respect to the optical axis of the system in order to aid 6 99420/5 in correcting for comma and spherical aberrations.
In a preferred embodiment of the invention, semi-transparent portion 16 is not uniformly reflecting. Preferably, the central area of the semi-transparent portion 16 has the desired uniform reflection and the reflectivity is decreased from the central area to the edge of the semi-transparent portion 16 so that the edge is not noticeable to the wearer. The inventors have found that a decreasing portion having an angle (as viewed by the wearer) of 50 mrad is sufficient to cause the edge effect to disappear where portion 16 has a reflectivity of 10%. For higher reflectivities larger decreasing portions are required - for example, 100 mrad at 30% reflectivities. In general an angle of 50-300 mrad is preferred, with about 130 mrad being especially preferred. Useful improvement is often achieved with angle as low as 50 mrad.
Figs. 4 and 5 illustrate one method of producing a semi-reflecting coating having the desired edge. Fig. 4 shows a vacuum system including a vacuum bell 38 containing visor 14. Within the vacuum bell is a heated boat 40 containing the coating material for the semi-transparent portion 16. Spaced from and between boat 40 and visor 14 is a mask 42 having an opening of the generally the same shape as the semi-transparent portion.
The size of the opening and the spacing of mask relative to boat 40 and visor 14, as well as the size of the boat will be determined by simple geometric considerations as illustrated in Fig. 5 taking into consideration the size of central area and the desired angle of the decreasing portion. As shown in Fig.5, portions of visor 14 adjacent to the center of the hole in mask 42 will be subject to evaporation from the entire boat, and will have a thicker layer deposited on them. Lines 44 indicate the portion of boat 40 (i.e., all of the boat) viewed by a point 46. Lines 48 indicate that off-center point 50 still sees the entire boat while lines 52 show that point 54 sees only a portion of the boat and is 7 12015S03 1-948 1 therefore coated by a thinner film of material. Thus, if a 2 reflecting material is used to coat a portion of the 3 surface of visor 14 with a thin film so that the central 4 coated portion is semi-transparent, then near the edges the 5 amount of coating will be reduced, reducing the 6 reflectivity at the edges. 7 Fig. 6 shows an vacuum coating system similar to that 8 of Fig. 4, except that the stationary mask is replaced by a 9 rotating mask 56 closely spaced from visor 14. The aperture 10 in mask 56, shown more clearly in Fig. 7 is not circularly 11 symmetric and rotates about point 58. In this situation, 12 the central portion, marked "a" on the curve at the bottom 13 of Fig. 7 will be uniformly coated, while portions outside 14 the central portion, marked "b" on the curve will have less 15 coating the farther they are from the central portion, due 16 to the decreased amount of time they view boat 40. 17 Although the present invention has been shown and 18 described with respect to preferred embodiments thereof, it 19 will be understood by those skilled in the art that various 20 changes, additions and deletions in form and detail thereof 21 can be made therein without departing from the spirit and 22 scope of the invention, which is limited only by the 23 claims. 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 8
Contents4
8 members in 5 offices
Priority claims2
| Document | Office | Kind | Date |
|---|---|---|---|
| 9942091 | Israel | A | |
| IL19910099420 | – | – | – |
Members8
| Document | Office | Kind | |
|---|---|---|---|
| EP0531121A2 | European Patent Office (EPO) | A2 | |
| EP0531121A3 | European Patent Office (EPO) | A3 | |
| US5341242A | United States of America | A | |
| EP0531121B1 | European Patent Office (EPO) | B1 | |
| AT182010T | Austria | T | |
| ATE182010T1 | Austria | T1 | |
| DE69229528D1 | Germany | D1 | |
| IL99420AThis record | Israel | A |
5 legal events, as the office reported them to INPADOC
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| Patent expiredExpiredEXP | EXP | |
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Numbers
- Publication, DOCDB
- 99420
- Publication, EPODOC
- IL99420
- Application
- 99420
- Application, DOCDB
- 9942091
- Application, EPODOC
- IL19910099420
Titles
- English
- Helmet mounted display
Classification
- CPC, 7
- G02B27/0172
- G02B5/10
- G02B5/26
- G02B27/017
- G02B2027/011
- G02B2027/0123
- G02B2027/0143
- IPC, 4
- G02B5 10
- G02B5 26
- G02B27 00
- G02B27 01