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Titlebook: Analysis and Synthesis of Distributed Real-Time Embedded Systems; Paul Pop,Petru Eles,Zebo Peng Book 2004 Springer Science+Business Media

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發(fā)表于 2025-3-21 19:18:58 | 只看該作者 |倒序?yàn)g覽 |閱讀模式
期刊全稱Analysis and Synthesis of Distributed Real-Time Embedded Systems
影響因子2023Paul Pop,Petru Eles,Zebo Peng
視頻videohttp://file.papertrans.cn/157/156275/156275.mp4
發(fā)行地址Considers the mapping and scheduling tasks within an incremental design process
圖書封面Titlebook: Analysis and Synthesis of Distributed Real-Time Embedded Systems;  Paul Pop,Petru Eles,Zebo Peng Book 2004 Springer Science+Business Media
影響因子.Embedded computer systems are now everywhere: from alarm clocks to PDAs, from mobile phones to cars, almost all the devices we use are controlled by embedded computers. An important class of embedded computer systems is that of hard real-time systems, which have to fulfill strict timing requirements. As real-time systems become more complex, they are often implemented using distributed heterogeneous architectures...Analysis and Synthesis of Distributed Real-Time Embedded Systems. addresses the design of real-time applications implemented using distributed heterogeneous architectures. The systems are heterogeneous not only in terms of hardware components, but also in terms of communication protocols and scheduling policies. Regarding this last aspect, time-driven and event-driven systems, as well as a combination of the two, are considered. Such systems are used in many application areas like automotive electronics, real-time multimedia, avionics, medical equipment, and factory systems. The proposed analysis and synthesis techniques derive optimized implementations that fulfill the imposed design constraints. An important part of the implementation process is the synthesis of the c
Pindex Book 2004
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Digitalisierung, Abtastung, Quantisierungcture, as described in Section 3.3. In this case, both the activation of processes and the transmission of messages are done based on the progression of time. The applications are modeled as a set of conditional process graphs, as presented in Section 2.3.1.
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Wolfgang Bohlen,Daniel Markgraf computers occupied entire rooms, had thousands of vacuum tubes, and dissipated hundreds of kilowatts of heat, but could only execute a couple of thousands of simple instructions per second [EBO3a]. Today, a complex microprocessor, which dwarfs the performance of the first electronic computers, can be integrated into a digital wristwatch.
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Wolfgang Bohlen,Daniel Markgraf particular application, real-time systems can be implemented as uniprocessor, multiprocessor, or distributed systems. These systems can be hard or soft, event-driven or time-driven, fault-tolerant, autonomous, etc. A good classification of real-time systems is given in [Kop97a].
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