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Chapter 8 Model Based Design of Distributed Embedded Cyber Physical Systems

机译:基于模型的分布式嵌入式网络物理系统设计

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In this chapter, we propose a Model-Based Design (MBD) methodology that aims to deal with complexity due to the convergence of different domains and technologies in distributed embedded systems, enabling early design optimization and reduction of time-to-market. This methodology requires models for very different domains able to work together: Electronic System Level (ESL), network, radio propagation and quantities to be captured by the sensor systems. Using different simulators involves co-simulation and coupling overhead. We introduce a framework based exclusively in SystemC and its extensions for Transaction-Level Modeling (TLM) and Analog Mixed-Signal (AMS), and extensible with additional C/C++ code. The whole approach has been validated in a Cyber-Physical System for demand side energy management in buildings and environments, developed during the SmartCoDe Project.
机译:在本章中,我们提出了一种基于模型的设计(MBD)方法,该方法旨在通过分布式嵌入式系统的不同领域和技术的融合来处理复杂性,从而实现早期设计优化和减少上市时间。该方法需要模型用于非常不同的域,能够一起工作:电子系统级(ESL),网络,无线电传播和由传感器系统捕获的数量。使用不同的模拟器涉及共仿真和耦合开销。我们在Systemc中完全基于Systemc及其扩展,用于交易级建模(TLM)和模拟混合信号(AMS)的扩展,并与其他C / C ++代码进行可扩展。在智能代码项目期间开发的建筑物和环境中的需求侧能量管理的网络物理系统中,整个方法已被验证。

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