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Ubiquitous multicore (UM) methodology for multimedia

หน่วยงาน Central Queensland University, Australia

รายละเอียด

ชื่อเรื่อง : Ubiquitous multicore (UM) methodology for multimedia
นักวิจัย : Chonka, Ashley. , Zhou, Wanlei. , Ngo, Leanne. , Xiang, Yang.
คำค้น : Applied research. , 890201 Application Software Packages (excl. Computer Games) , 890202 Application Tools and System Utilities. , 080504 Ubiquitous Computing. , 080106 Image Processing. , Ubiquitous computing. , Multimedia systems. , Multi-core -- Multimedia
หน่วยงาน : Central Queensland University, Australia
ผู้ร่วมงาน : -
ปีพิมพ์ : 2551
อ้างอิง : http://hdl.cqu.edu.au/10018/27984 , http://dx.doi.org/10.1109/CSA.2008.75 , cqu:4293
ที่มา : Chonka, A, Zhou,W, Ngo, L and Xiang, Y 2008, 'Ubiquitous multicore (UM) methodology for multimedia', Proceedings of International Symposium on Computer Science and its Applications, 13-15 Oct 2008, Institute for Electrical and Electronic Engineers, Los Alamitos, USA, pp. 131-136. http://dx.doi.org/10.1109/CSA.2008.75
ความเชี่ยวชาญ : -
ความสัมพันธ์ : Proceedings of International Symposium on Computer Science and its Applications, 2008, 13-15 October 2008, Hobart, Australia. Los Alamitos, USA. : IEEE Computer Society, 2008. p.131-136 6 pages Refereed 0769529836 , ACQUIRE [electronic resource] : Central Queensland University Institutional Repository.
ขอบเขตของเนื้อหา : -
บทคัดย่อ/คำอธิบาย :

For at least a decade or more, multimedia developers have taken for granted, that each generation of microprocessors would lead them to modify their application, in order make them run substantially faster. This so-called ‘free’ ride seems to be coming to an end, with results in increased clock speeds, the widening of the gap in processor and memory performance, and the tradeoffs that are needed to meet the former two points. In this paper, we propose a ubiquitous multicore (UM) design, in order to speed up computations and allow real-time multimedia. To accomplish this objective, we separate out the different multimedia and place them on their own separate core processors. For example, a manager trains his/her staff on security, by utilizing different multimedia. For example, showing a visual documentary on security which asks staff members questions, records their answers and updates the manager in real-time. As our experiments show, our UM system increases performance speeds at an average of 100%, with the average execution cost of 1.4ms, which shows multimedia resources are being used more efficiently and effectively.

บรรณานุกรม :
Chonka, Ashley. , Zhou, Wanlei. , Ngo, Leanne. , Xiang, Yang. . (2551). Ubiquitous multicore (UM) methodology for multimedia.
    กรุงเทพมหานคร : Central Queensland University, Australia.
Chonka, Ashley. , Zhou, Wanlei. , Ngo, Leanne. , Xiang, Yang. . 2551. "Ubiquitous multicore (UM) methodology for multimedia".
    กรุงเทพมหานคร : Central Queensland University, Australia.
Chonka, Ashley. , Zhou, Wanlei. , Ngo, Leanne. , Xiang, Yang. . "Ubiquitous multicore (UM) methodology for multimedia."
    กรุงเทพมหานคร : Central Queensland University, Australia, 2551. Print.
Chonka, Ashley. , Zhou, Wanlei. , Ngo, Leanne. , Xiang, Yang. . Ubiquitous multicore (UM) methodology for multimedia. กรุงเทพมหานคร : Central Queensland University, Australia; 2551.