APPARATUS AND METHOD FOR DISPLAYING AN IMAGE OF AN OBJECT ON A VISUAL DISPLAY UNIT
Method and apparatus for displaying an image of an object on a visual display unit, wherein the image that is shown on the visual display unit depends on a parameter or parameters that is/are selected from the group comprising the 3-D orientation of the visual display unit, a position of a viewer's head or eyes in relation to the visual display unit, and a position of a light source or light sources at a location where the visual display unit is located, or a combination thereof.
1 . Method for displaying an image of an object on a visual display unit, characterized in that the image of the object that is shown on the visual display unit depends on a parameter or parameters that is/are selected from the group comprising the 3-D orientation of the visual display unit, a position of a viewer's head or eyes in relation to the visual display unit, and a position of a light source or light sources at a location where the visual display unit is located, or a combination thereof.
2 . Method according to claim 1 , characterized in that the image of the object that is shown on the visual display unit is calculated from a representation of the object, the calculation taking into account a parameter or parameters that is/are selected from the group comprising the 3-D orientation of the visual display unit, a position of a viewer's head or eyes in relation to the visual display unit, and a position of a light source or light sources at a location where the visual display unit is located, or a combination thereof.
3 . Method according to claim 1 , characterized in that the image of the object that is shown on the visual display unit is selected from a database comprising a series of images of the object, wherein the selected image of the object provides a best fit with seeing the object in real life, taking into account a parameter or parameters that is/are selected from the group comprising the 3-D orientation of the visual display unit, a position of a viewer's head or eyes in relation to the visual display unit, and a position of a light source or light sources at a location where the visual display unit is located, or a combination thereof.
4 . Method according to claim 3 , characterized in that the image of the object that is shown on the visual display unit is calculated as an interpolation of images from the object that come closest to seeing the object in real life, taking into account a parameter or parameters that is/are selected from the group comprising the 3-D orientation of the visual display unit, a position of a viewer's head or eyes in relation to the visual display unit, and a position of a light source or light sources at a location where the visual display unit is located, or a combination thereof.
5 . Apparatus for displaying an image of an object, comprising a handheld computer with an integrated visual display unit, wherein said computer is provided with first means to detect its 3-D orientation, characterized in that the computer is loaded with software that cooperates with said first means for detecting the 3-D orientation of the visual display unit to arrange that the image of the object that is shown on the visual display unit depends on the 3-D orientation of the visual display unit.
6 . Apparatus according to claim 5 , characterized in that it is provided with second means to establish a position of a viewer's head or eyes in relation to the visual display unit, and that the software cooperates with said second means to arrange that the image of the object that is shown on the visual display unit depends on the established position of a viewer's head or eyes in relation to the visual display unit.
7 . Apparatus according to claim 5 , characterized in that is provided with third means to estimate a position of a light source or light sources at a location where the visual display unit is located, and that the software cooperates with said third means to arrange that the image of the object that is shown on the visual display unit depends on the estimated position of the light source or light sources.
8 . Apparatus according to claim 5 , characterized in that the software operates in a continuous loop at a frequency of approximately 30 Hz.
9 . Apparatus according to claim 6 , characterized in that is provided with third means to estimate a position of a light source or light sources at a location where the visual display unit is located, and that the software cooperates with said third means to arrange that the image of the object that is shown on the visual display unit depends on the estimated position of the light source or light sources.
10 . Apparatus according to claim 6 , characterized in that the software operates in a continuous loop at a frequency of approximately 30 Hz.
11 . Apparatus according to claim 7 , characterized in that the software operates in a continuous loop at a frequency of approximately 30 Hz.
12 . Apparatus according to claim 9 , characterized in that the software operates in a continuous loop at a frequency of approximately 30 Hz.