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The system was originally known as "sequential scanning" when it was used in the Baird 240 line television transmissions from Alexandra Palace , England in 1936 . It was also used in Baird's experimental transmissions using 30 lines in the 1920s . This rough animation compares progressive scan with Interlace scan, also demonstrating the interline twitter effect associated with interlace. The interlaced images use half the bandwidth of the progressive ones. The left-center image precisely duplicates the pixels of the progressive one, but interlace causes details to twitter. Real interlaced video blurs such details to prevent twitter, but as seen on the right-center image, such softening (or anti-aliasing) comes at the cost of image clarity. A line doubler could not restore the previously interlaced image on the right to the full quality of the progressive image on the left. ''Note - Because the refresh rate has been greatly slowed down, and the resolution is much lower than that of typical 480-line interlaced video, the flicker in the simulated interlaced portions and also the visibility of the black lines in this image is exaggerated.'' USAGE IN STORING OR TRANSMITTING Progressive scan is used for scanning and storing film-based material on DVD s, for example, as 480p24 or 576p25 formats. USAGE IN TVS, VIDEO PROJECTORS AND MONITORS Progressive scan (also known as: P-Scan) is used for most Cathode Ray Tube (CRT) Computer Monitor s, all LCD computer monitors, and most HDTV s as the display resolutions are progressive by nature. (Other CRT-type displays, such as SDTV s, typically display interlaced video only) Some TV s, and most video projectors have one or more progressive scan inputs. Before HDTV became common, some high end displays supported 480p (480 vertical lines or resolution with progressive scan.) This allowed these displays to be used with devices which output progressive scan like Progressive Scan DVD Players and certain video game consoles. HDTV s support the progressively scanned resolutions of 480p and 720p. 1080p displays are available, but are usually more expensive than the comparable lower resolution HDTV models. Computer monitors can use even greater Display Resolution s. Advantages of progressive scan
:The perceived vertical resolution of an interlaced image is usually equivalent to multiplying the active lines by about 0.6. This means that, when viewing progressive sourced material, a progressive display will show a more detailed image, when compared to an interlaced one, even if both have exactly the same Display Resolution , such as 640 x 480 pixels.
:In the case of most media such as DVD movies and video games, the video is blurred during the authoring process itself to mask flicker artifacts when used on interlace displays. As a consequence, recovering the sharpness of the original video is impossible when the video is viewed progressively. An excellent, but rarely employed countermeasure to this is when display hardware and video games come equipped with options to blur the video at will, or to keep it at its original sharpness. This allows the viewer to achieve the desired image sharpness with both interlaced and progressive displays. An example of a video game with such a feature is Super Smash Bros. Melee , where a "Deflicker" option existed. Ideally it would be turned on when played on an interlaced display to reduce interline twitter, and off when played on a progressive display for maximum image clarity.
Disadvantages of progressive scan
For explanations of why interlacing was originally used, see Interlace . For an in-depth explanation of the fundamentals and advantages/disadvantages of converting interlaced video to a progressive format, see Deinterlacing . SEE ALSO |
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