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Synthesis and feedback on the distribution and parallelization of FMI-CS-based co-simulations with the DACCOSIM platform

机译:关于基于FMI-CS的共模与Daccosim平台的合成与反馈

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A co-simulation applied to Smart Grids consists of grouping in the same setting models of physical components (among other electrical ones) and models of control units (including communication devices). Combining these models needs to use a generic and robust co-simulation environment instead of developing a specific one. In this context, we developed the DACCOSIM 2017 co-simulation platform based on FMI-CS (Functional Mock-up Interface for CoSimulation) standard to simulate the physical components of a Smart Grid. These components represent the most CPU-consuming part of the co-simulation. However, the tasks of FMI-CS-based applications (FMUs) are exposed as heterogeneous gray boxes with no information concerning their computation and communication volumes. Moreover, all these FMUs frequently communicate with each other by sending a lot of small messages. Consequently, the deployment of an FMI-CS based co-simulation on a distributed architecture is a complex task carried out by DACCOSIM 2017. This paper introduces the development of DACCOSIM-2017, and its experiment on distributed architectures.
机译:应用于智能电网的共模包括在相同的物理组件(其他电气组件)和控制单元的模型中分组(包括通信设备)。组合这些模型需要使用通用和强大的共模环境而不是开发特定的。在此上下文中,我们开发了基于FMI-CS(Cosimulation界面的功能模型界面)标准的Daccosim 2017共模拟平台,以模拟智能电网的物理组件。这些组件代表了共模的CPU消费部分。然而,基于FMI-CS的应用程序(FMUS)的任务暴露为异构灰色框,没有关于其计算和通信卷的信息。此外,所有这些FMU通过发送大量小消息经常互相通信。因此,在分布式架构上部署了基于FMI-CS的共模是Daccosim 2017执行的复杂任务。本文介绍了Daccosim-2017的发展,以及其在分布式架构的实验。

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