在空间领域实现国际标准之间的模拟互操作性

E. Crues, Dan Dexter, A. Falcone, A. Garro, B. Möller
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引用次数: 1

摘要

今天,空间系统的设计和开发是由该领域的历史空间机构(如NASA、ESA、Roscosmos和JAXA)与它们的工业伙伴合作进行的。空间系统生命周期的特点是成本高、条件不确定和情况危险。为了缓解这些问题,航天机构严重依赖建模和仿真作为一项关键技术来支持空间系统的分析、设计和操作。为了支持大规模分布式仿真,科学界已经开发了一些标准来支持仿真模型的重用和互操作性,如IEEE 1516高级体系结构(HLA)、实时平台参考联合对象模型(RPR FOM)、仿真模型可移植性(SMP)和新颖的空间参考联合对象模型(SpaceFOM)。虽然SpaceFOM标准是专门为处理空间系统而概念化的,但其他标准更为通用,可用于设计和模拟一般的复杂系统。因此,存在大量的规则和指导方针来支持这些标准之间的互操作性。本文介绍了利用SpaceFOM实现HLA、RPR FOM和SMP仿真模型的互操作性和可移植性的解决方案和经验。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enabling Simulation Interoperability between International Standards in the Space Domain
Today, the design and development of space systems are conducted cooperatively by historical space agencies in this area such as NASA, ESA, Roscosmos, and JAXA together with their industrial partners. The space system lifecycle is characterized by high costs, uncertain conditions, and dangerous scenarios. To mitigate these issues, space agencies rely heavily on Modelling and Simulation as a key technology to support the analysis, design, and operation of space systems. To support large-scale distributed simulations, the scientific community has developed several standards to support the reuse and interoperability of simulation models such as IEEE 1516 High-Level Architecture (HLA), Real-time Platform Reference Federation Object Model (RPR FOM), Simulation Model Portability (SMP), and the novel Space Reference Federation Object Model (SpaceFOM). While the SpaceFOM standard has been specifically conceptualized for handling space systems, the other ones are more general-purpose and can be used to design and simulate generic complex systems. As a consequence, there is a lake of rules and guidelines to enable interoperability among these standards. The paper presents solutions and experiences for enabling interoperability and transferability of HLA, RPR FOM, and SMP simulation models with SpaceFOM.
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