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CYBER-PHYSICAL SYSTEM DEVELOPMENT ENVIRONMENT FOR ENERGY APPLICATIONS

机译:能源应用的网络物理系统开发环境

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Cyber-physical systems (CPS) are smart systems that include engineered interacting networks of physical and computational components. The tight integration of a wide range of heterogeneous components enables new functionality and quality of life improvements in critical infrastructures such as smart cities, intelligent buildings, and smart energy systems. One approach to study CPS uses both simulations and hardware-in-the-loop (HIL) to test the physical dynamics of hardware in a controlled environment. However, because CPS experiment design may involve domain experts from multiple disciplines who use different simulation tool suites, it can be a challenge to integrate the heterogeneous simulation languages and hardware interfaces into a single experiment. The National Institute of Standards and Technology (NIST) is working on the development of a universal CPS environment for federation (UCEF) that can be used to design and run experiments that incorporate heterogeneous physical and computational resources over a wide geographic area. This development environment uses the High Level Architecture (HLA), which the Department of Defense has advocated for co-simulation in the field of distributed simulations, to enable communication between hardware and different simulation languages such as Simulink and LabVIEW. This paper provides an overview of UCEF and motivates how the environment could be used to develop energy experiments using an illustrative example of an emulated heat pump system.
机译:网络物理系统(CPS)是智能系统,包括工程化的物理和计算组件的交互网络。广泛的异构组件的紧密集成使得新功能和生活质量改善,如智能城市,智能建筑和智能能源系统等关键基础设施。研究CPS的一种方法使用模拟和硬件循环(HIL)来测试受控环境中硬件的物理动态。但是,因为CPS实验设计可能涉及来自使用不同仿真工具套件的多个学科的域专家,所以将异构仿真语言和硬件接口集成到一个实验中可能是一个挑战。美国国家标准与技术研究院(NIST)正在开发一种通用的CPS环境对联盟的发展(UCEF),可以用来设计和运行在广阔的地理区域整合异构物理和计算资源的实验。此开发环境使用高级架构(HLA),该部门辩护部主张在分布式模拟领域进行共同仿真,以实现硬件和不同仿真语言之间的通信,如Simulink和LabVIEW。本文提供了Ucef的概述,并使环境如何用于使用模拟热泵系统的说明性示例来开发能量实验。

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