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Titlebook: Architecture and Design of Distributed Embedded Systems; IFIP WG10.3/WG10.4/W Bernd Kleinjohann Book 2001 IFIP International Federation for

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期刊全稱Architecture and Design of Distributed Embedded Systems
期刊簡(jiǎn)稱IFIP WG10.3/WG10.4/W
影響因子2023Bernd Kleinjohann
視頻videohttp://file.papertrans.cn/162/161285/161285.mp4
學(xué)科分類(lèi)IFIP Advances in Information and Communication Technology
圖書(shū)封面Titlebook: Architecture and Design of Distributed Embedded Systems; IFIP WG10.3/WG10.4/W Bernd Kleinjohann Book 2001 IFIP International Federation for
影響因子Due to the decreasing production costs of IT systems,applications that had to be realised as expensive PCBs formerly, cannow be realised as a system-on-chip. Furthermore, low cost broadbandcommunication media for wide area communication as well as for therealisation of local distributed systems are available. Typically themarket requires IT systems that realise a set of specific features forthe end user in a given environment, so called embedded systems. Someexamples for such embedded systems are control systems in cars,airplanes, houses or plants, information and communication deviceslike digital TV, mobile phones or autonomous systems like service- oredutainment robots. .For the design of embedded systems the designer has to tackle threemajor aspects: . . The application itself includingthe man-machine interface, .. The (target) architecture of thesystem including all functional and non-functional constraints and,.. the design methodology including modelling, specification,synthesis, test and validation. .. The last two points are amajor focus of this book. .This book documents the high quality approaches and results that werepresented at the International Workshop on Distributed
Pindex Book 2001
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Evolutionary Design of Chaos Control in 1D of the resulting architecture. It is shown that gains can be achieved when functionality distribution is guided by optimization criteria, using an automatically generated centralized processing architecture. This architecture is modified in order to carry out distributed processing. Two alternative
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Diogo Ribeiro,Rui Cal?ada,Raimundo Delgadoerent locations and hard real-time requirements. Thus, a structured design process has been established with the PARADISE design environment. The design process covers all steps from behavioral specification to final chip realization. In this paper, we describe how system specification and refinemen
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https://doi.org/10.1007/978-3-319-20406-2or error recognition, analysis, and processing. The basic principle comprises the use of different controllers. A robust controller as a fail-safe device and a controller to be tested are implemented In the case of an error during the tests the system automatically switches to the robust controller.
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