1. A display system comprising
a display device (DD) having a display screen (DS) for displaying an image,
a diffuser (DI) arranged in front of the display device (DD),
an illumination system (IS), and
a controller (CO) for controlling at least a portion the diffuser (DI) to be in a transparent state wherein a corresponding portion of the display screen (DS) is visible through the at least the portion of the diffuser (DI), or to be in an opaque state for hiding the corresponding portion of the display screen (DS), and for controlling the illumination system (IS) to illuminate at least the portion of the diffuser (DI) when in the opaque state.
2. A display system as claimed in claim 1, wherein the controller (CO) is constructed to switch the illumination system (IS) during the opaque state to a first light level, and to switch the illumination system (IS) to a second light level being lower than the first light level during the transparent state.
3. A display system as claimed in claim 1, wherein the display device (DD) has an off-state wherein no image is displayed, and an on-state wherein the image is displayed, and wherein the controller (CO) is constructed for obtaining the opaque state of the diffuser during the off-state and the transparent state during the on-state, and for controlling the illumination system (IS) to emit light having a higher brightness during the off-state than during the on-state.
4. A display system as claimed in claim 1, wherein the controller (CO) is constructed to switch on the illumination system (IS) during the opaque state and to switch off the illumination system (IS) during the transparent state.
5. A display system as claimed in claim 1, wherein the diffuser (DI) is divided in separate controllable portions, and wherein the controller (CO) is constructed for controlling the separate controllable portions to obtain a first sub-set of said portions which are in the opaque state and second sub-set of said portions which are in the transparent state.
6. A display system as claimed in claim 1, wherein the illumination system (IS) is constructed for illuminating a side of the diffuser (DI) being directed towards the display device (DD).
7. A display system as claimed in claim 1, wherein the illumination system (IS) comprises a light source (LS) along at least an edge of the illumination system.
8. A display system as claimed in claim 7, wherein the light source (LS) comprises at least one light emitting device.
9. A display system as claimed in claim 7, wherein the light source (LS) comprises at least one laser.
10. A display system as claimed in claim 1, wherein the illumination system (IS) comprises a light guide (LG) for guiding light emitted by the light source (LS) towards the diffuser (DI).
11. A display system as claimed in claim 10, wherein the light guide (LG) is coated with a reflective coating at least at a side directed towards the light source (LS), and wherein the reflective coating has at least one hole for enabling the light from the light source (LS) to enter the light guide (LG).
12. A display system as claimed in claim 10, wherein an area of the diffuser (DI) corresponds to an area of the display screen (DS), and wherein the light guide (LG) is constructed to illuminate substantially the total area of the diffuser (DI).
13. A display system as claimed in claim 1, wherein an area of the diffuser (DI) corresponds to an area of the display screen (DS).
14. A diffuser system comprising
a diffuser (DI) having at least one portion being controllable in a transparent state or an opaque state, and
an illumination system (IS) for illuminating the at least one portion of the diffuser (DI) when in the opaque state, wherein the illumination system (IS) comprises a light source (LS) being arranged along at least an edge of the diffuser (DI), and a light guide (LG) for guiding light emitted by the light source (LS) towards at least the at least one portion of the diffuser (DI).
15. A diffuser system as claimed in claim 14, further comprising a controller (CO) for controlling the at least one portion of the diffuser (DI) to be in the transparent state or in the opaque state, and for controlling the illumination system (IS) to illuminate at least the at least one portion of the diffuser (DI) when in the opaque state.
16. A method of controlling a diffuser (DI) and an illumination system (IS) in a display system comprising a display device (DD) having a display screen (DS) for displaying an image, the diffuser (DI) being arranged in front of the display device (DD), the illumination system (IS) being arranged for illuminating at least one portion of the diffuser (DI), the method comprising controlling (CO):
the at least one portion of the diffuser (DI) to be in a transparent state wherein the display screen (DS) is visible or in an opaque state for hiding the display screen (DS), and
the illumination system (IS) to illuminate at least the at least one portion of the diffuser (DI) when in the opaque state.
The claims below are in addition to those above.
All refrences to claim(s) which appear below refer to the numbering after this setence.
1. A computerized method for distinguishing between false positive read events and true positive events of reading a file, comprising:
determining an amount of data read from the file; and
in case the amount of data read from the file exceeds a threshold generating a true positive read event, otherwise generating a false positive read event in case a decision condition is met.
2. The computerized method for distinguishing between false positive read events and true positive events of reading a file according to claim 1, wherein the decision condition comprises one or more of: a specific predetermined number of readings from the file, a determined number of readings from the file, a specific predetermined time lapse from the first reading of the file, a determined time lapse from the first reading of the file, or any combination thereof.
3. The computerized method for distinguishing between false positive read events and true positive events of reading a file according to claim 1, wherein the threshold is determined according to at least the size of the file.
4. The computerized method for distinguishing between false positive read events and true positive events of reading a file according to claim 1, wherein the threshold is determined according to a formula, a lookup table, or a combination thereof.
5. The computerized method for distinguishing between false positive read events and true positive events of reading a file according to claim 4, wherein the formula is:
T=max(1,min(32,32\u221216*log(K2K)*SK))
Wherein:
T is the threshold in KB,
K is the minimum size of file for which the entire file is read in KB;
K2 is the minimum size of the file for which half of the file is read in KB; and
S is the actual size of the file in KB.
6. The computerized method for distinguishing between false positive read events and true positive events of reading a file according to claim 1, further comprising generating the true positive read event if sequential segments of the file were read, otherwise generating the false positive read event.
7. A computerized method for distinguishing between false positive read events and true positive events of reading a file, comprising:
generating a true positive read event in case sequential segments of the file were read, otherwise generating a false positive read event.
8. A computerized apparatus for distinguishing between false positive read events and true positive events of reading a file, comprising:
a data storage device storing the file therein; and
a controller linked to the data storage device, the controller configured to generate false positive read events and true positive events of reading the file responsive to an amount of data read from the file.
9. The computerized apparatus for distinguishing between false positive read events and true positive events of reading a file according to claim 8, wherein the controller determines false positive read events and true positive events responsive to whether the amount of data read from the file exceeds a threshold, respectively.
10. The computerized apparatus for distinguishing between false positive read events and true positive events of reading a file according to claim 8, wherein the controller determines false positive read events in case a decision condition is met.
11. The computerized apparatus for distinguishing between false positive read events and true positive events of reading a file according to claim 8, wherein the controller determines false positive read events and true positive events responsive to whether data is eventually read sequentially, respectively.