CA2436596C

Method and arrangement for the three-dimensional display

Abstract

The invention is directed to a method for three-dimensional display in which a plurality of individual imageelements aid are made visible simultaneously in a raster ofcolumns i and lines j, wherein the image elements aidreproduce partial information from a plurality of views A k (k=l...n) of a scene/object, and adjacent image elements.alpha. ij radiate light of different wavelengths or wavelengthregions. The invention is further directed to arrangementsfor carrying out the method. In a method of the typedescribed above, wavelength-dependent propagation directionsare predetermined for the light radiated from the imageelements aid. The propagation directions within anobservation space in which an observer is situated intersectin a plurality of intersection points which correspond toobservation positions. From each observation position, oneeye of an observer perceives predominantly partialinformation of a first selection and the other eye perceivespredominantly partial information of a second selection fromviews Ak (k=1...n).

CA2436596C, drawing sheet 1
Sheet 1 of 46

Term

Term ended

Expired 24 January 2021, 5.7 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

43 claims: 12 independent, 31 dependent

  1. 1
    CA 02436596 2004-10-15 29708-9 CLAIMS :1. Method for three-dimensional display of a scene/object in which a plurality of individual image elements 0¾ are made visible simultaneously in a raster of columns i and lines j, wherein the image elements Qüj show partial information from more than two views Ak (k=l...n) of the scene/object, and adjacent image elements 0¾ radiate light of different wavelengths λ or wavelength regions Δλ, characterized in that propagation directions are predetermined for the light radiated from the image elements Œij, which propagation directions depend on the wavelength λ, or wavelength region Δλ of this light, wherein the propagation directions within an observation space (7) in which the observer(s) (1) is or are situated intersect in a plurality of intersection points, each of which corresponds to an observation position, so that, from each observation position, one eye of an observer (1) optically perceives predominantly partial information of a first selection and the other eye optically perceives predominantly partial information of a second selection from views Ak (k=l...n).
  2. 6
    An apparatus for implementing the method according to claims 1 to 5, with a color LC display (2) for reproducing image elements aij from a plurality of views Αχ (k=l...n) of a scene/object and an array of a plurality of 20 wavelength filters /3pq which is arranged at a predetermined distance z in front of or after the color LC display (2) with respect to the viewing direction of an observer, characterized in that the color LC display (2) has separately controllable subpixels R,G,B which are arranged 25 in columns i and lines j, wherein each subpixel R,G,B in column i and in line j corresponds to an image element and every image element Ofij corresponds to partial information of one or more than two views Ak (k=l...n), the color LC display (2) is coupled with a control circuit which 30 generates partial information on the subpixels R,G,B according to the following function:CA 02436596 2004-10-15 , 29708-9 ' 86 k = i-Cy j -η IntegerPart where i is the index of an image element aij in a line of the raster;j is the index of an image element ajj in a column of the raster;k is the continuous number of the view 5 A* (k=l...n) from which the partial information to be reproduced on a determined image element aij originates;n is the total number of utilized views Ak (k=l...n), c±j is a selectable coefficient matrix for combining and mixing on the raster the different partial information which 10 originates from views Ak (k=l...n), and the wavelength filters /?pq are positioned within the array in such a way that propagation directions are predetermined for the light proceeding from the subpixels R,G,B, which propagation directions intersect in observation positions from which 15 predominantly partial information of a first selection of views Ak (k=l...n) can be perceived by one eye of one or more observers (1) and predominantly partial information of a second selection from views Ak (k=l...n) can be perceived by the other eye of one or more observers (1). 20
  3. 9
    An apparatus according to claims S to 8, characterized in that the color LC display (2) with subpixels R,G,B and the color LC display (3) with subpixels R',G',B' are followed in the viewing direction of an observer (1) by a flat illumination source (4) emitting white light.
  4. 16
    An apparatus for implementing the method according to claims 1 to 5, comprising a device for reproducing an image array of a plurality of image elements which represent information from a plurality of views of the scene/object in predetermined correlation, wherein light is radiated from the individual image elements in different wavelength regions, a filter arrangement (9) which is arranged in front of or behind the image reproducing device in the viewing direction of an observer with a filter array (10) comprising a plurality of filter elements, the linear polarization filter elements (11.2), and wavelength filter elements which transmit in determined wavelength regions, with a linear polarization filter (13) and with a controllable optical medium (12), preferably in the form of liquid crystals, which is arranged between the filter array (10) and the linear polarization filter (13) and which, depending on its control, causes a rotation of the polarization direction of linearly polarized light passing through, wherein the filter elements are arranged in such a way that propagation directions which are defined for the light radiated by the image reproducing device are predetermined in a first state of the optical medium (12) in which the polarization direction caused by the optical medium (12) and the polarization direction of the subsequent filter, i.e., the CA 02436596 2004-10-15 29708-9 linear polarization filter elements (11.2) of the filter array (10) or of the linear polarization filter (13), intersect, so that predominantly information of a first group of views can be perceived at a plurality of first observation locations and predominantly information of a second group of views can be perceived at a plurality of second observation locations, each of which is located roughly at eye distance from an associated first observation location, wherein there is a plurality of such groups of views, and in a second state of the optical medium (12) in which the polarization direction caused by the optical medium (12) and the polarization direction of the subsequent filter, i.e., of the linear polarization filter elements (11.2) of the filter array (10) or of the linear polarization filter (13), essentially run parallel to one another, the filter arrangement (9) has increased transparency compared with the first state.
  5. 19
    An apparatus for implementing the method according to claims 1 to 5, comprising a device for reproducing an image array having a plurality of image elements which represent information from a plurality of views of the scene/object in predetermined correlation, wherein light is radiated from the individual image elements in different CA 02436596 2004-10-15 29708-9 wavelength regions, a filter arrangement (9) which is arranged on the image reproducing device in the viewing direction of an observer with a filter array (10) comprising a plurality of wavelength filter elements which transmit in determined wavelength regions, and with a diffusion screen (15) which is arranged behind the image reproducing device and in front of the filter array (10) in the viewing direction of an observer and which is switchable selectively between a transparent position and a scattering position, wherein the wavelength filter elements are arranged in such a way that propagation directions which are defined for the light radiated by the image reproducing device are predetermined in the transparent position of the diffusion screen (15) , so that predominantly information of a first group of views can be perceived at a plurality of first observation locations and predominantly information of a second group of views can be perceived at a plurality of second observation locations, each of which is located approximately at eye distance from an associated first observation position, and the structuring of the light passing through the filter array (10) is substantially reduced in the scattering position of the diffusion screen relative to the first position.
  6. 22
    An apparatus for implementing the method according to claims 1 to 5, comprising an image reproducing device, particularly a color LC display (2) for reproducing an image array having a plurality of image elements which represent information from a plurality of views of the scene/object in defined correlation, wherein light is radiated from the image elements in different wavelength regions, a filter arrangement (9) with at least two static filter arrays which are arranged in parallel one behind the other, which filter arrangement (9) is arranged at a distance z in front of or following the image reproducing device considered in the viewing direction of an observer (1), wherein each filter array has a plurality of filter elements which pass light in determined wavelength regions and/or determined polarization directions, an arrangement for displacing at least one of the filter arrays at right angles to the viewing direction from a first position relative to the second filter array into a second position relative to the second filter array, wherein the individual filter elements are arranged on the filter arrays in such a way that, in the first position, the filter arrangement (9) predetermines propagation directions for the light emitted by the image reproducing device such that predominantly information of a first group of views is perceptible at a first observation location and predominantly information of a second group of views is perceptible at a second observation location at eye distance from the first observation location, and wherein there exists a plurality of such locations with different groups of the kind indicated above, and the filter arrangement (9) has an increased transparency in the second position compared with the first position.
  7. 26
    An apparatus for implementing the method according to claims 1 to 5, with an image reproducing device (18) 20 having a plurality of translucent image elements on which image information of a plurality of views of the scene/object can be displayed, with a wavelength filter array (20) which follows the image reproducing device (18) in the viewing direction of an observer and which comprises 25 a plurality of filter elements which transmit light in predetermined wavelength regions, and with an illumination device, wherein the scene/object can be perceived twodimensionally or three-dimensionally depending on the illumination of the image elements and/or filter elements, 30 characterized in that means are provided for switching between a plurality of different operating modes in which the illumination light reaches the observer either, for CA 02436596 2004-10-15 29708-9 ' 94 purposes of two-dimensional display, exclusively only through the image elements of the image reproducing device (18) , but not through filter elements of the wavelength filter array (20), or, for purposes of three-dimensional display, through at least a portion of the filter elements of the wavelength filter array (20) and subsequently through an associated portion of the image elements of the image reproducing device (18).
  8. 36
    An apparatus for implementing the method according to claims 1 to 5, characterized in that the transmission characteristics Xb for the filters βρς correspond to transmission factors, transparency wavelength regions or combinations thereof, wherein transmission factors are decisive for neutral filters for wavelength-independent attenuation of the light intensity and transparency wavelength regions for wavelength filters.
  9. 38
    An apparatus for implementing the method according to claims 1 to 5, wherein a flat screen, preferably a plasma display (35), is provided for image display, and a filter array (38) applied to a carrier material (37) is arranged in front of the flat screen in the observation direction, characterized in that at least every tenth filter element (39) of the filter array (38) comprises electrically conductive material.
  10. 40
    An apparatus for implementing the method according to claims 1 to 5 for reproducing partial information from a plurality of views Ak (ka4), comprising a tracking device for detection of the eye position of a selected observer (44), and a computation device which actuates the displacement device (43) as a function of the eye position of the selected observer (44) which is determined by the tracking device, wherein, in every position of the filter array (42), the propagation directions intersect within an observation space (45) in a plurality of intersection points, each of which corresponds to an observation position, so that, from each observation position, one eye of an observer or observers optically perceives predominantly partial information of a first selection and the other eye optically perceives predominantly partial information of a second selection from views Ak (k=l...n), wherein particularly the CA 02436596 2004-10-15 29708-9 selected observer (44) sees almost exclusively the middle views of views Ak (k=l...n) because of the position of the filter array which is adapted permanently to the eye position of the observer, and wherein, due to the use of n>3 views, the inertia of the displacement device is compensated in such a way that essentially at no time does the selected observer (44) perceive an image with inverted depth.
  11. 42
    Process for the production of a filter array (38) for use in an arrangement for implementing the method according to claims 1 to 5, in which at least every tenth filter element (39) comprises electrically conductive material, comprising the following steps:- preparation of a silk-screening mask using an electrically conductive paint, e.g., SPI Conductive Carbon Paint (manufactured by Structure Probe, Inc., USA), wherein at least every tenth filter element determined as nontransparent is produced by means of this conductive paint ;- silk-screening of the filter structure on a transparent carrier material, e.g., PMMA or glass;and - repetition of the steps indicated above, if required.
  12. 43
    Process for the production of a filter array (38) for use in an arrangement for implementing the method CA 02436596 2004-10-15 29708-9 100 according to claims 1 to 5, in which at least every tenth filter element (39) comprises electrically conductive material, comprising the following steps:- preparation of a printing mask using metallic 5 particles, e.g., silver particles, wherein at least every tenth filter element (39) determined as non-transparent is produced by means of these particles;- coating a transparent carrier material, e.g., PMMA or glass, with a transparent adhesive (e.g., Acrifix 192 glue, 10 produced by Rohm GmbH, Darmstadt);- printing the filter structure on the carrier material ;and - if necessary, exposure, e.g., UV exposure, for curing the glue. FETHERSTONHAUGH & CO. OTTAWA, CANADA PATENT AGENTS