A gateway to easily integrate simulation platforms for co-simulation of cyber-physical systems

Thomas P. Roth, M. Burns
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引用次数: 7

Abstract

Cyber-physical systems (CPS) research leverages the expertise of researchers from multiple domains to engineer complex systems of interacting physical and computational components. An approach called co-simulation is often used in CPS conceptual design to integrate the specialized tools and simulators from each of these domains into a joint simulation for the evaluation of design decisions. Many co-simulation platforms are being developed to expedite CPS conceptualization and realization, but most use intrusive modeling and communication libraries that require researchers to either abandon their existing models or spend considerable effort to integrate them into the platform. A significant number of these co-simulation platforms use the High Level Architecture (HLA) standard that provides a rich set of services to facilitate distributed simulation. This paper introduces a simple gateway that can be readily implemented without co-simulation expertise to adapt existing models and research infrastructure for use in HLA. An open-source implementation of the gateway has been developed for the National Institute of Standards and Technology (NIST) co-simulation platform called the Universal CPS Environment for Federation (UCEF).
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一种易于集成仿真平台的网关,用于网络物理系统的协同仿真
信息物理系统(CPS)研究利用来自多个领域的研究人员的专业知识来设计相互作用的物理和计算组件的复杂系统。在CPS概念设计中经常使用一种称为联合仿真的方法,将这些领域的专用工具和模拟器集成到一个联合仿真中,以评估设计决策。许多联合仿真平台正在开发中,以加快CPS的概念化和实现,但大多数使用侵入式建模和通信库,这要求研究人员要么放弃现有模型,要么花费相当大的精力将它们集成到平台中。这些联合仿真平台中有相当一部分使用高级体系结构(HLA)标准,该标准提供了丰富的服务集来促进分布式仿真。本文介绍了一个简单的网关,它可以很容易地实现,而不需要联合仿真专业知识来适应HLA中使用的现有模型和研究基础设施。该网关的开源实现已经为美国国家标准与技术研究所(NIST)联合仿真平台开发,该平台称为联邦通用CPS环境(UCEF)。
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