Digital photos are stored as digital files on electronic media. Digital photos are comprised of pixels each one with a unique color and intensity. While digital photos do not have to be compressed in most cases they are. Compression serves one goal make files smaller and save storage space.
A digital photo is a built of pixels. A pixel is a single dot in the photo that has a value. A pixel's value represents its color and intensity. Usually each pixel is represented by an RGB value (Red, Green and Blue that combined together create the pixel's color) that occupies 3 bytes. Digital photo files can be very big. For example if you shoot a photo using an 8 mega pixels digital camera the photo will have 8000000 pixels each one occupying 3 bytes. The total file size would be 8000000*3=24000000 or 24Mbytes. However ff compressed using the right technology this file could be much smaller - about 3Mbytes would be common.
There are two main types of compression technologies: lossy and lossless:
Lossless compression: Lossless compression means that if you take a file compress it and then decompress it ? the decompressed file would be the exact copy of the original file. With lossless compression no data is lost in the compression process ? the compression software uses better representation of the data in the file but it does not remove any data from it.
Lossy compression: Lossy compression means that if you take a file, compress it and then decompress it ? the decompressed file would be slightly different than the original one. The compression software not only represents the file's data more efficiently but it also removes data that it analyzed as being minor or not important. Such data can be removed without hardly any noticeable degradation in the compressed file quality. The differences between the original file and the decompressed file are minor and negligible to the user.
Lossless compression is usually applied to text and other data where all data is equally important. For example when compressing the text in this article and later on decompressing it you would want to get the exact original article without any words or sentences dropped by the compression software that decided they were not important.
Lossy compression on the other hand is usually applied to digital photos and graphic files. Such files include data that the viewer would not be able to notice if removed. For example small changes to color in a photo might not be noticeable. The decompressed file is not exactly the same as the original one but when viewing both the original and decompressed photos side by side the viewer can not tell the difference. Lossy compression software can be set to different compression levels based on how much data is allowed to be lost. At some point losing too much data is noticeable and degrades the digital photo quality. Many digital cameras allow you to set the level of compression from low to high where high compression means smaller files but less quality and low compression means bigger files but no noticeable quality degradation.
Digital photos are almost solely compressed using lossy technologies. The reason is that due to the nature of a photo (it includes noise, very minor changes that are hard to compress but are not important to the view and more) lossless compression technologies do not perform well on it. On the other hand Lossy compression technologies can be very effective in reducing digital photo file sizes ? sometimes an order of magnitude or more.
Lossless And Lossy Compression
Digital photos are used as digital files on electronic media. Digital images consist of one pixel with a unique color and intensity. While digital photos must not compressed in most cases they are. Compression is a goal to make the files that are smaller and save space.
A digital photo is a built of pixels. A pixel is a single point on the picture that has a value. A pixel is the value of its color and intensity. In general, each pixel is determined by an RGB value (red, green and blue together, that the color pixels), which is about 3 bytes. Digital photo files can be very large. For example, if you shoot a photo with an 8-megapixel digital camera, the photo of each pixel is a crew 8000000 power 3 bytes. The total size would be 8000000 * 3 = 24000000 or 24Mbytes. However ff compressed with the right technology, this file could be much smaller - about 3Mbytes would be common.
There are essentially two types of compression technologies: lossy and lossless:
Lossless Compression: Lossless compression means that when you compress a file and then decompress - decompress the file would be an exact copy of the original file. With lossless compression, no data are lost in the compression process - the software compression uses a better representation of the data in the file but does not remove all data from one such.
lossy compression: lossy compression means that when you move a file, compresses it and then decompress it - the file would be unpacked somewhat differently than the document. The software compression is not only the file data more efficiently, but it also removes the data that they analyzed as a minor or not important. These data can be removed without hardly noticeable deterioration in the quality of compressed file. The differences between the original file and the file be unpacked smaller and irrelevant for the user.
Lossless compression is usually limited to text and other data, in which all data is equally important. For example, if the compression of the text of this article and later to decompress you wish to specify the original article without words or phrases to the software compression decided that it is not important.
Lossy compression on the other side is usually on digital photos and graphics files. These files contain data, the viewer would not be able to notice when removed. For example, small changes in color in a photograph may not be noticeable. The unpacked file is not exactly the same as the original, but if you both the original and decompressed images side by side to the viewer can not tell the difference. Lossy compression software can be at different compression levels on the basis of data, how much may be lost. At some point to lose too much data is significant and degrades the digital photo quality. Many digital cameras can be the amount of compression from low to high where high compression means smaller files, but less quality and low compression means larger files, but no noticeable deterioration in quality.
Digital photos are almost exclusively using lossy technologies. The reason is that due to the nature of a photo (it includes noise, very minor changes that are difficult to compress, but not important, the view and more) lossless compression technologies are not good at them. On the other hand, lossy compression technologies can be very effective in reducing the digital photo file sizes - sometimes an order of magnitude or more.
Both Ziv Haparnas & Jacob Georgeson are contributors for EditorialToday. The above articles have been edited for relevancy and timeliness. All write-ups, reviews, tips and guides published by EditorialToday.com and its partners or affiliates are for informational purposes only. They should not be used for any legal or any other type of advice. We do not endorse any author, contributor, writer or article posted by our team.
Ziv Haparnas has sinced written about articles on various topics from Digital Camera, Digital Photos and Digital Camera. Ziv Haparnas is an expert in technology. Ziv Haparnas writes about practical technology and science issues. Find more on photo printing and photography is on printrates.com - a place about. Ziv Haparnas's top article generates over 74000 views. Bookmark Ziv Haparnas to your Favourites.
Jacob Georgeson has sinced written about articles on various topics from Photography, Computers and The Internet and Photography. Visit compression for more information about this and other topics. Jacob Georgeson is a writer. This article can be published only if the resource box including the backl. Jacob Georgeson's top article generates over 2740000 views. Bookmark Jacob Georgeson to your Favourites.
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