The Application of Multimedia Video Technology in 3D Table Tennis Games

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With the continuous development of computer technology, the technology in designing and developing 3D games has been more and more mature. Compared to the traditional ones, 3D games present more real screen effects and stronger visual impact due to its adopting the concept of stereo space coordinates, increasing the arbitrariness of space operation and its own attraction. By applying media video technology to 3D table tennis games, players can hit the ball with the racket to implement the move of the ball in the game scene. To achieve the ball’s real-time depiction, every frame in the game must be updated. An outstanding 3D game cannot be developed without an excellent 3D game engine. The complex graphic algorithm of the game is encapsulated in modules efficiently while simple and effective SDK interface, powerful editor and matching third-party plug-ins are provided externally. Meanwhile, it possesses the function in network, database and script, etc, making the development of 3D games easier and of high quality. Numerous UI (graphical interfaces) are offered in the whole game to help players understand and learn the game. The game is operated so easily that it can be well played only through click, which simplifies the fussy operation of regular ones and provides players with more enjoyment.

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1934-1937

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August 2014

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© 2014 Trans Tech Publications Ltd. All Rights Reserved

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[1] Lorensen W E, Cline H E. Marching cubes: A high resolution 3D surface construction algorithm[C]/ACM Siggraph Computer Graphics. ACM, 1987, 21(4): 163-169.

DOI: 10.1145/37402.37422

Google Scholar

[2] Tsai R Y. A versatile camera calibration technique for high-accuracy 3D machine vision metrology using off-the-shelf TV cameras and lenses[J]. Robotics and Automation, IEEE Journal of, 1987, 3(4): 323-344.

DOI: 10.1109/jra.1987.1087109

Google Scholar

[3] Blanz V, Vetter T. A morphable model for the synthesis of 3D faces[C]/Proceedings of the 26th annual conference on Computer graphics and interactive techniques. ACM Press/Addison-Wesley Publishing Co., 1999: 187-194.

DOI: 10.1145/311535.311556

Google Scholar