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Titlebook: Architecture of Computing Systems - ARCS 2006; 19th International C Werner Grass,Bernhard Sick,Klaus Waldschmidt Conference proceedings 200

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發(fā)表于 2025-3-21 17:16:51 | 只看該作者 |倒序瀏覽 |閱讀模式
期刊全稱Architecture of Computing Systems - ARCS 2006
期刊簡稱19th International C
影響因子2023Werner Grass,Bernhard Sick,Klaus Waldschmidt
視頻videohttp://file.papertrans.cn/162/161306/161306.mp4
學科分類Lecture Notes in Computer Science
圖書封面Titlebook: Architecture of Computing Systems - ARCS 2006; 19th International C Werner Grass,Bernhard Sick,Klaus Waldschmidt Conference proceedings 200
影響因子Technological progress is one of the driving forces behind the dramatic devel- mentofcomputersystemarchitecturesoverthe pastthreedecades.Eventhough it is quite clear that this development cannot only be measured by the ma- mum number of components on a chip, Moore’s Law may be and is often taken as a simple measure for the non-braked growth of computational power over the years. The more components are realizable on a chip, the more innovative and unconventional ideas can be realized by system architects. As a result, research in computer system architectures is more exciting than ever before. This book coversthe trends that shape the ?eld of computer system archit- tures.Thefundamenataltrade-o?inthedesignofcomputing systemsis between ?exibility, performance,powerconsumption, andchip area.The full exploitation of future silicon capacity requires new architecture approaches and new design paradigms such as multiple computers on a single chip, recon?gurable processor arrays, extensible processor architectures, and embedded memory technologies. For a successful use in practical applications, it is not enough to solve the ha- wareproblemsbutalsotodevelopplatformsthatprovidesoftwareinfr
Pindex Conference proceedings 2006
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https://doi.org/10.1007/978-3-7091-1865-8tant opportunities, but also new serious difficulties. This paper briefly analyses the situation, trends and problems in the field of the modern microelectronic-based systems. However, the main aim of the paper is to discuss the paradigms of life-inspired systems and quality-driven design that seem
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Steffen Harzsch,Jakob Krieger,Zen Faulkesns in heterogeneous parallel and distributed computer systems and associated performance prediction are often based on estimated values of application and system parameters, whose actual values are uncertain and may be differ from the estimates. We have designed a model for deriving the degree of ro
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,Hexapoda: A ,’s View of Development,imultaneously and the interconnections between group members are highly dynamic and self-organizing. To illustrate how the architecture implements communication, examples of client-server and point-to-point communication are given. An interconnection architecture of a Mobile Computer Supported Colla
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https://doi.org/10.1007/978-3-7091-1868-9hich the sensors are deployed. Each sensor establishes a wireless connection to a mobile station and transmits its current measurements. On encounters two mobile stations can exchange their data for increasing redundancy and likeliness of delivery. When a mobile station approaches the sensor network
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Sabrina Kaul-Strehlow,Eric R?ttingertation with respect to QoS, the computing system and its building blocks should be self-managed. When addressing the challenges associated with architecting self-managed mobile computing systems, one must take a holistic view on QoS management and the heterogonous entities in the mobile environment.
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