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Design and implementation of on-orbit service collaborative control simulation platform

机译:在轨服务协同控制仿真平台的设计与实现

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Space missions always be high cost, long cycle and high risk, simulation technology is an important way in the research and engineering applications. But with the continuous extension of the depth and breadth of the field of aerospace, multi-disciplinary, multi-level, interdisciplinary, heterogeneous systems, multi-technology integration has been significantly enhanced co-simulation technology and simulation system put forward higher requirements. Fast, flexible, accurate and to build a multi-level co-simulation resolution system to grasp and analyze the problem has an important application value. Collaborative Control Simulation System spacecraft co-simulation theory and method of satellite-oriented collaborative control simulation framework is established based on the principle of co-simulation technology in the rail service, rail service satellite mission critical modeling and simulation. The system can not only effectively together multiple disciplines simulation play the advantages of co-simulation, and no decline in the timeliness and accuracy of simulation.
机译:航天任务始终是高成本,长周期和高风险的,模拟技术是研究和工程应用中的重要途径。但是随着航空航天,多学科,多层次,跨学科,异构系统领域的深度和广度的不断扩大,多技术集成已经大大增强了协同仿真技术,对仿真系统提出了更高的要求。快速,灵活,准确地建立一个多层次的协同仿真解决系统,对掌握和分析问题具有重要的应用价值。基于协同仿真技术的原理,建立了轨道交通协同控制仿真系统航天器协同仿真的理论与方法,并建立了轨道服务卫星任务关键建模与仿真。该系统不仅可以有效地将多个学科的仿真有效地结合在一起发挥协同仿真的优势,而且不会降低仿真的及时性和准确性。

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