DYMONDS computer platform for smart grids

M. Ilić
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引用次数: 2

Abstract

In this paper we propose an actor-oriented computer platform, which is a natural outgrowth of our Dynamic Monitoring and Decision Systems (DYMONDS) modeling, communications and control paradigm for smart grids. We summarize this approach which is physics-based and explain how its actor-oriented structure can support a possible multi-level computer platform. By combining principles of model-based Ptolemy II computer platform with these models, we sketch out the basis for implementing a DYMONDS-based computer platform for smart grids. Both the dynamic internal models of polymorphic actors, as well as the system model of computing and communication protocols relating their external interfaces are described. Perhaps, most important is the fact that the proposed computer platform can evolve dynamically as operating conditions and status of actors vary, and, longer-term, as different components are added to the physical system and different smarts are being embedded, rather than having to re-program every time as the physical system changes; this is because new semantics are introduced at the component interaction level rather than at the programming language level.
DYMONDS智能电网计算机平台
在本文中,我们提出了一个面向参与者的计算机平台,这是我们的智能电网动态监测和决策系统(DYMONDS)建模,通信和控制范例的自然产物。我们总结了这种基于物理的方法,并解释了其面向参与者的结构如何支持可能的多级计算机平台。通过将基于模型的托勒密II计算机平台的原理与这些模型相结合,我们概述了实现基于dymonds的智能电网计算机平台的基础。描述了多态参与者的动态内部模型,以及与其外部接口相关的计算和通信协议的系统模型。也许,最重要的事实是,所提出的计算机平台可以随着操作条件和参与者状态的变化而动态发展,并且从长远来看,随着不同的组件被添加到物理系统中,不同的智能被嵌入,而不是每次物理系统变化时都必须重新编程;这是因为新的语义是在组件交互级别而不是在编程语言级别引入的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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