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Graphics Pertemuan 4. Matakuliah : T0732 / Sistem Multimedia Tahun : 2007. Learning Outcomes. Pada akhir pertemuan ini, diharapkan mahasiswa akan mampu : Menunjukkan Penggunaan Gambar pada Aplikasi Multimedia. Outline Materi. What is an Image Image Media Types Bitmap Image
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GraphicsPertemuan 4 Matakuliah : T0732 / Sistem Multimedia Tahun : 2007
Learning Outcomes Pada akhir pertemuan ini, diharapkan mahasiswa akan mampu : • Menunjukkan Penggunaan Gambar pada Aplikasi Multimedia
Outline Materi • What is an Image • Image Media Types • Bitmap Image • Vector Image • 3-Dimensional Graphic Models • Working With Graphics
What is an Image? • An image is the graphical and visual representation of some information that can be displayed on a computer screen or printed out • Images come in a variety of forms: • Photographs • Drawings • Paintings • Television and motion pictures • Semantics • Maps, etc.
Op e n i ng S c ree n M a i n M enu L i n k s J a z z Di ve P ro fi l e P ro m o t ed B and s H is t o ry C o nt a c t T he L it t l e T he J o hn Fl a i r z Bi rd y Wa if s B ut le r T r i o What is an Image? • Images play an important part in multimedia • Navigation • User interface components • Help systems • Clip art
Image Media Types • Images can be generally divided into two formats: • Bitmapped or Raster images • Draw-type or Vector graphics or Metafile images • Bitmapped images are stored as an array of pixels. It represents the image as an array of dots, called pixels • Vector graphics are stored as geometric shape to represent the image (mathematically defined)
Raster Image • A pixel is the smallest element of resolution on a computer screen (Screen Resolution) • Bitmap matrix of pixel • Each pixel can be in a specific colour and each pixel consists of two or more colors. • The range of these colours is known as the colour depth. • Colour depth is measured in bits per pixel • Remember: a bit (binary digit) is either 1 or 0 and that there are eight bits in a byte
Colour depth • 1 bit per pixel = 2 colours (monochrome) • 2 bits per pixel = 4 colours • 4 bits per pixel = 16 colours • 8 bits per pixel = 256 colours • Generally good enough for colour images • 16 bits per pixel = 65536 colours • Better quality for photograph-like images, also known as high colour • 24 bits per pixel = >16 million possible colours • Used to recreate photo realistic images, also known as true colour
Colour Depth True Colour (24 bits) 8 bits 4 bits 1 bit http://en.wikipedia.org/wiki/Color_depth
Raster Image • More colour per pixel bigger image size • The number of pixels is related to the size of file that required to store an image. • Remember, two factors effect the size file bitmap are: • Resolution • Color Depth
Bitmaps images Original image Shown magnified
Calculating the size of a raster image • Where: • Width of the images measured in pixels • Height of the images measured in pixels • Colour depth is the number of bits used for color measured in bits per pixel • Remember: • 1024 bytes = 1 kilobyte (KB) • 1024 kilobytes = 1 megabyte (MB)
Example • A 640 x 480 pixel image in 24-bit colour would require how much disk space?
Type of Compression Lossless compression : • Modify the way the data is organized or represented to reduce storage size. • No loss in detail; Example: ‘Run-length Encoding’. • Original : AAABBBCCCCCCABCABC • RLE : 3A3B6C2ABC
Type of Compression Lossy compression schemes: • Try to maximise compression without loss obvious to human user. • Remove detail during the compression • NOTE: repeated compression caused loss in quality
Popular bitmap formats • Microsoft bitmap (.bmp) • Used in microsoft windows • TIFF - Tagged Image File Format (.tif) • Used for faxing images (amongst other things) • JPEG - Joint Photographic Expert Group (.jpg) • Useful for storing photographic images • GIF - Graphics Interchange Format (.gif) • Used a lot on web sites • PNG - Portable Network Graphics (.png) • A new format for web graphics • PCD – Kodak photo CD • A new format for store image in a compressed form on a CD
Advantages and Disadvantages of using bitmap images • Advantages • Convey detail of information quickly • Real life • Disadvantages • Depend on a Resolution • Effect to the image quality • Size file is big
Software to create bitmap images • Popular PC packages include: • Microsoft Paint • Included with microsoft windows • Microsoft PhotoDraw 2000 • http://www.microsoft.com/office/photodraw/ • Adobe Photoshop • http://www.adobe.com/products/photoshop/main.html • Paint Shop Pro • http://www.jasc.com/psp6.html • Macromedia Fireworks • http://www.macromedia.com/software/fireworks/productinfo/
Vector images • Vector images are stored as the set of graphic primitives required to represent the image • A graphic primitive is a simple graphic based on drawing elements or objects such as shape • e.g. square, line, ellipse, arc, etc. • The image consists of a set of commands (mathematical equations) that are drawn the object when needed.
Vector images • Storing and representing images by mathematical equations is called vector graphics or Object Oriented graphics. • Each primitive object has various attributes that go to make up the entire image • e.g. x-y location, fill colour, line colour, line style, etc. • Example: • RECTANGLE : rectangle top, left, width, height, color is ( 0, 0, 200, 200, red) • CIRCLE : circle top, left, radius, color • LINE : Line x1, y1, x2, y2, color
Vector images • Vector image or vector graphics can be resized without losing the integrity of the original image. • Scaling a vector is a mathematical operation - only the attributes change, the image is unaffected
Shapes Circle Ellipse Rectangle Square Pie segment Triangle Pentagon, hexagon, heptagon, octagon, etc Basic Line Polyline Arc Bezier curve Text Font, weight Primitive geometric drawing objects
Shown magnified Original image Scaling vector graphics
Advantages and Disadvantages of using vector image • Advantages • Relatively small amount of data required to represent the image. • Therefore, it does not required a lot of memory to store • Easier to manipulate • Disadvantages • Limited level of detail than can be presented in an image
Software to create images • Graphics programs are tools that allow an artist to create and edit designs used in multimedia applications. • Generally, graphics programs can be categorized as: • Drawing programs • Creating draw type graphics • Provide freehand. Example geometric shape • Example : Adobe Illustrator, Corel Draw, Macromedia Freehand • Paint programs • Those creating bitmaps • Useful in creating original art • Example: Paint Shop Pro • Image editing programs • Making changes to existing images, such as manipulating the brightness or contrast, applying textures, patterns • Examples : Adobe Photoshop, Corel PhotoPaint
Vector formats • Windows metafile (.wmf) • Used by Microsoft Windows • SVG - Scalable Vector Graphics (.svg) • A new format devised for the web • CGM - Computer Graphics Metafile (.cgm) • Older format commonly used for clip art • Adobe PostScript (.ps) • A page description language used to control printers • Adobe Portable Document Format (.pdf) • A page description language common on the web • Drawing Exchange Format (.dfx) • Store 3D image created by design program AutoCAD • Encapsulated PostScript (.epf) • Professional printing: Illustration program, Adobe Systems, Desktop Publishing programs
3-Dimensional Graphic models • A 3D model is a variation on the vector format • The location of a 3-dimensional object is specified using x, y and z co-ordinates • Further primitives can be found in 3D models • Cube, sphere, pyramid, etc. • Camera, spotlight, texture, shading etc. X 3D model Y Z
3-Dimensional Graphic models • 3D graphics offer the photorealistics effects that have you seen in TV, Computer Games • Examples, Motion Picture films such as: • The Incredibles, Shrek, Happy Feet, Transformer, etc. • Examples 3D programs: • Lightwave • 3D Studio Max • Maya
Photorealistics Effects Transformer the Movie (2007)
Hardware used to acquire images • Scanners and digital imaging products • Many forms of scanner • Drum • Flat-bed • Negative / slide • Hand-held • Important to check the optical resolution of the scanner • measured in dots per inch (DPI)
Hardware used to acquire images • Digital camera • Uses digital memory instead of film • Images are transferred to computer via a cable • Can be very high resolution • Stills from a camcorder or PC “web-cam” type camera • Home products tend to be low resolution
Hardware used to create / edit images Tablet and pen • Graphics tablet and pen • Preferred by digital artists • Pressure sensitivity • Digitiser tablet • Preferred by technical artists • Mouse has accurate crosshair to help digitise drawings Digitiser
Converting image formats TrueType / PostScript Type font Bitmapped font Render as bitmap Text Bitmapped image Vector image Contour trace Optical Character Recognition (OCR)
Working With Graphics • Considerations and guidelines when we are working with graphics: • Choose the graphic depend on your work • Choose the correct software • Use minimum color depth • Delivery Systems
How graphics/images can be used effectively • Different types of graphics are used in different ways: • Line drawing are graphical representations of physical objects. There are 3 kinds of line drawings: • Isometric - represent 3-D objects without realistic perspective • Orthographic - are 2-D representations of objects • Perspective - represent objects in their most realistic form
How graphics/images can be used effectively • Graphs and Tables • In just a glance, graphs can provide specific data, show general trends in data or depict the relationships between data and data trends • Diagrams • Help users conceptualize a process, flow or interrelationship. Examples of diagrams include: Flow charts, Schematic Drawings and Block Diagrams.
Advantages and Disadvantages of using images • Advantages • Convey a lot of information quickly • Add visual simulation and colour • Can communicate across language borders • Enhance other media • Disadvantages • Do not provide in-depth explanations • Graphics rarely suffice to convey a whole message in business, technical or safety settings • Can be misinterpreted • Graphics should be used carefully to make sure the message is not ambiguous or cryptic