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Distributed Co-Simulation of Complex Engineered Systems by Combining the High Level Architecture and Functional Mock-up Interface

机译:通过组合高级架构和功能模拟界面分布复杂工程系统的共模

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摘要

Modern Complex Engineered Systems (CES) are the result of the ever-growing advances in science and technology that involve new paradigms, architectures and functionalities derived from multiple domains. Due to the nature of CES, which are composed of many heterogeneous components often designed and manufactured by organizations belonging to different engineering domains, is difficult to handle their whole lifecycle through classical Modeling and Simulation (M&S) techniques. To manage this complexity, it is necessary the definition of more suitable techniques capable of addressing, in an integrated way, the issues of reusability, interoperability and distribution of CES simulation models. In this context, great benefits may come from the joint exploitation of Distributed Simulation (DS) and Co-Simulation approaches. To concretely explore this opportunity, this article proposes a solution that relies on the integration of the Functional Mock-up Interface (FMI) and the IEEE 1516 - High Level Architecture (HLA) standard. To prove the feasibility and validity of the defined solution, a case study concerning a scenario in the context of the Simulation Exploration Experience (SEE) international project, led by NASA, is also presented.
机译:现代复杂的工程系统(CES)是涉及新的范式,架构和源自多个域的新的范式,架构和功能的越来越多的科学和技术的结果。由于CE的性质,由众多由属于不同工程域设计和制造的许多异构组件组成,难以通过经典建模和仿真(M&S)技术来处理整个生命周期。为了管理这种复杂性,需要以综合方式解决更合适的技术的定义,以综合方式,可重用性,互操作性和CES模拟模型的分布的问题。在这种情况下,巨大的好处可能来自分布式仿真(DS)和共模接近的联合开发。为了具体探索这个机会,本文提出了一种依赖于功能模型接口(FMI)和IEEE 1516 - 高级架构(HLA)标准的集成的解决方案。为了证明所定义的解决方案的可行性和有效性,还提出了由NASA领导的模拟勘探经验(参见)国际项目的情况下的情景的案例研究。

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