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Modeling and Simulation of Satellite Subsystems for End-to-End Spacecraft Modeling

机译:端到端航天器建模的卫星子系统建模和仿真

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During the past ten years, the Air Force Research Laboratory (AFRL) has been simultaneously developing high-fidelity spacecraft payload models as well as a robust distributed simulation environment for modeling spacecraft subsystems. Much of this research has occurred in the Distributed Architecture Simulation Laboratory (DASL). AFRL developers working in the DASL have effectively combined satellite power, attitude pointing, and communication link analysis subsystem models with robust satellite sensor models to create a first-order end-to-end satellite simulation capability. The merging of these two simulation areas has advanced the field of spacecraft simulation, design, and analysis, and enabled more in-depth mission and satellite utility analyses. A core capability of the DASL is the support of a variety of modeling and analysis efforts, ranging from physics and engineering-level modeling to mission and campaign-level analysis. The flexibility and agility of this simulation architecture will be used to support space mission analysis, military utility analysis, and various integrated exercises with other military and space organizations via direct integration, or through DOD standards such as Distributed Interaction Simulation. This paper discusses the results and lessons learned in modeling satellite communication link analysis, power, and attitude control subsystems for an end-to-end satellite simulation. It also discusses how these spacecraft subsystem simulations feed into and support military utility and space mission analyses.
机译:在过去的十年中,空军研究实验室(AFRL)同时开发了高保真航天器有效载荷模型以及用于对航天器子系统建模的强大分布式仿真环境。这项研究大部分发生在分布式体系结构模拟实验室(DASL)中。在DASL中工作的AFRL开发人员已将卫星功率,姿态指向和通信链路分析子系统模型与可靠的卫星传感器模型有效地结合在一起,以创建一阶端到端卫星仿真功能。这两个仿真领域的融合推动了航天器仿真,设计和分析领域的发展,并实现了更深入的任务和卫星效用分析。 DASL的核心功能是支持各种建模和分析工作,从物理和工程级别的建模到任务和战役级别的分析。这种仿真架构的灵活性和敏捷性将通过直接集成或通过分布式交互仿真等DOD标准,用于支持太空任务分析,军事效用分析以及与其他军事和太空组织的各种综合演习。本文讨论了为端到端卫星仿真对卫星通信链路分析,功率和姿态控制子系统进行建模的结果和经验教训。它还讨论了这些航天器子系统仿真如何馈入并支持军事用途和太空任务分析。

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