Method and apparatus for reducing effects of copy protection...

Cryptography – Video cryptography – Copy protection or prevention

Reexamination Certificate

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Details

C380S224000, C386S349000, C386S349000

Reexamination Certificate

active

06285765

ABSTRACT:

BACKGROUND OF THE INVENTION
1. Field of the Invention
Enhancements to a video anticopy process, the enhancements causing additional degradation to the picture quality when a copy of a protected recording is played back, and additionally which reduce the viewability of unauthorized recordings of the protected recording.
2. Description of the Prior Art
Video anticopy processes are well known. An example is Ryan, U.S. Pat. No. 4,631,603 issued Dec. 23, 1986, incorporated by reference which discloses (see Abstract):
“A video signal is modified so that a television receiver will still provide a normal color picture from the modified video signal while the video tape recording of the modified video signal produces generally unacceptable pictures. This invention relies on the fact that typical videocassette recorder automatic gain control systems cannot distinguish between the normal sync pulses (including equalizing or broad pulses) of a conventional video signal and added pseudo-sync pulses. Pseudo-sync pulses are defined here as any other pulses which extend down to normal sync tip level and which have a duration of at least 0.5 microseconds. A plurality of such pseudosync pulses is added to the conventional video signal during the vertical blanking interval, and each of said pseudo-sync pulses is followed by a positive pulse of suitable amplitude and duration. As a result, the automatic gain control system in a videotape recorder will make a false measurement of video level which causes an improper recording of the video signal. The result is unacceptable picture quality during playback.”
Column 2, beginning at line 5 states that the added pulse pairs (each pair being a negative-going pseudo-sync pulse followed by a positive-going “AGC” pulse) cause an automatic level (gain) control circuit in a videotape recorder to erroneously sense video signal level and produce a gain correction that results in an unacceptable videotape recording.
Therefore this prior art “basic anticopy process” causes an abnormally low amplitude video signal to be recorded when a copy is attempted. Some of the effects observed when the illegal copy is replayed are horizontal tearing (positional displacement) and vertical displacement of the picture. Whether this occurs or not is often largely dependent on the picture content, i.e. presence of white (light) and black (dark) areas in the picture. Therefore this prior art process, while generally providing excellent copy protection, with some combinations of videotape recorders (such as VCRs) and television sets provides a picture viewable by persons willing to tolerate a poor quality picture.
Also, with certain VCRs and TV sets the various well known prior art copy protection processes provide little picture degradation. Certain markets for prerecorded video material have a high rate of piracy, i.e. illegal copying of videotapes, in spite of copy protection and these viewers apparently are relatively insensitive to the poor quality picture in illegal copies caused by the prior art copy protection processes. Thus there is a need for copy protection process enhancements which degrade the quality of the picture even more than that of the prior art processes.
SUMMARY OF THE INVENTION
In accordance with the present invention, the above-described prior art “basic” copy protection process is enhanced by further modifying the video signal in several ways to ensure that the necessary picture content requirement is met to maximize effectiveness of the basic copy protection process.
The further modifications include blanking a portion of the active video in the overscan area of the picture just prior to the occurrence of the (1) horizontal or (2) vertical synchronization (sync) signals, and inserting into the blanked portion a waveform that (for a video signal having reduced amplitude) is perceived by the TV receiver or videotape recorder as a sync signal, and so causes incorrect synchronization of the VCR or TV receiver. Using this modification especially only on certain video lines or fields causes substantial picture degradation of an unauthorized copy. Another modification narrows the horizontal sync pulses to cause sensing of a spurious vertical sync signal in a TV set and will also affect certain videotape recorders.
In the horizontal modification, the right edge of the picture is replaced by a “checker” pattern appearing (like a checker board) of black and gray rectangles. The width of this checker pattern is chosen to be within the overscan (not viewed) part of the picture when displayed on a standard television receiver. It will be understood that with an abnormally low signal amplitude, when the picture content is light (such as mid gray), the left edge of the black rectangle in certain video lines will trigger an early horizontal retrace as being a negative-going (towards blanking level) transition. When the picture content is dark, the right edge of the gray rectangle (adjacent to a dark picture area), in certain video lines will trigger an early retrace on each line as also being a negative-going transition. (The description of video waveforms herein follows the convention of positive amplitude being white and negative amplitude being black).
The horizontal modification checker pattern in one embodiment is generated at a rate slightly asynchronous to the video field repetition rate, so that the checker pattern appears to slowly move up or down the picture, at a rate of about 1 second for any given point to migrate from the bottom to the top of the picture or vice versa. The checker pattern has no effect on the picture when an original (authorized) cassette is replayed since no signal conditions are present in the TV set which are in any way abnormal.
However, when an illegal (unauthorized or pirated) copy of the cassette is replayed using a videotape recorder, the signal attenuation resulting from the above-described prior art copy protection process, in combination with the checker pattern, causes the television set horizontal retrace to occur early in each video line where either when the black or gray rectangle is present, depending on picture content and the characteristics of the videotape recorder and TV set. The black checkers and gray checkers each may cause a transition of sufficient amplitude depending on the previous active video picture content. If the picture content is light (white), the left edge of the black checker causes a negative-going transition to black; if the picture content is dark, the right edge of the gray checker causes a negative-going transition from gray to the following dark area (typically blanking level). The difference between lines ending in black or gray in turn causes a horizontal displacement to the picture information, i.e. a wiggle, which moves slowly up or down the picture.
The tendency of a television set to retrace (perform the horizontal flyback early) is exploited by providing the light to dark transition (the left edge of the black checker or the right edge of the gray checker) prior to the location in the video line of the genuine horizontal line synchronization (sync) signal. The early retrace so triggered causes the picture information on the succeeding line to be advanced, i.e. displaced horizontally to the right by an amount equal to the distance between the negative transition and the location of the leading edge of the genuine horizontal sync signal. This displacement causes a “tearing” (horizontal repositioning) of picture information.
A somewhat similar modification in the vertical picture sense inserts alternating dark and white bands in place of active video in the last few lines of selected video fields in the lower overscan portion of the picture just prior to the vertical blanking interval, and/or extending into the first few lines of the vertical blanking interval.
This vertical rate modification is implemented in several ways. In one embodiment several of the active video lines (five or so) immediately prior to the vertical sync signal are made to alternate between blanking level and a gray le

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