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Computer-Aided Design of Multi-Agent Cyber-Physical Systems

机译:多种代理网络物理系统的计算机辅助设计

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This paper presents a methodology to aid the development of multi-agent cyber-physical systems. The software architecture is structured in a multi-layer fashion, distributed on different devices (agents), making its design very challenging. A methodology is thus needed to meet the performance goal of such a system. The proposed methodology relies on Model-Based Software Design techniques, and on the Model/Software/Hardware-In-The-Loop (MIL, SIL, HIL) simulations. In particular, the HIL verification technique, which is widely adopted in the automotive and avionic industry also in the early development phases as a Computer-Aided Design tool, is the core tool of the real-time performances assessment verification. To speed-up the development process, and to obtain a toolchain coherent with the proposed approach, the adoption of a Model-Based Software Design methodology represents an optimal solution. Within those assumptions, we propose a benchmark of the methodology, applied on a customized multi-agent system. The aim is to prove that the proposed method is able to achieve and verify a set of real-time requirements on the system behavior.
机译:本文提出了一种方法,可以帮助开发多种子体网络物理系统。软件架构以多层方式结构,分布在不同的设备(代理)上,使其设计非常具有挑战性。因此需要一种方法来满足这种系统的性能目标。所提出的方法依赖于基于模型的软件设计技术,以及在模型/软件/硬件循环(MIL,SIL,HIL)模拟上。特别是,在汽车和航空工业中广泛采用的HIL验证技术也在早期开发阶段作为计算机辅助设计工具,是实时性能评估验证的核心工具。为了加快开发过程,并获得具有所提出的方法的工具链断,采用基于模型的软件设计方法代表了最佳解决方案。在这些假设中,我们提出了一种方法的基准,应用于定制的多助理系统。目的是证明该方法能够实现和验证系统行为的一组实时要求。

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