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A Fractionated Spacecraft System Assessment Tool Based on Lifecycle Simulation Under Uncertainty

机译:不确定条件下基于生命周期仿真的航天器系统评估工具

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摘要

To comprehensively assess fractionated spacecraft, an assessment tool is developed based on lifecycle simulation under uncertainty driven by modular evolutionary stochastic models. First, fractionated spacecraft nomenclature and architecture are clarified, and assessment criteria are analyzed. The mean and standard deviation of risk adjusted lifecycle cost and net present value (NPV) are defined as assessment metrics. Second, fractionated spacecraft sizing models are briefly described, followed by detailed discussion on risk adjusted lifecycle cost and NPV models. Third, uncertainty sources over fractionated spacecraft lifecycle are analyzed and modeled with probability theory. Then the chronological lifecycle simulation process is expounded, and simulation modules are developed with object oriented methodology to build up the assessment tool. The preceding uncertainty models are integrated in these simulation modules, hence the random object status can be simulated and evolve with lifecycle timeline. A case study to investigate the fractionated spacecraft for a hypothetical earth observation mission is carried out with the proposed assessment tool, and the results show that fractionation degree and launch manifest have great influence on cost and NPV, and generally fractionated spacecraft is more advanced than its monolithic counterpart under uncertainty effect. Finally, some conclusions are given and future research topics are highlighted.
机译:为了全面评估分级航天器,在基于模块化演化随机模型的不确定性条件下,基于生命周期仿真开发了评估工具。首先,明确了航天器的命名和结构,并分析了评估标准。风险调整后的生命周期成本和净现值(NPV)的平均值和标准差定义为评估指标。其次,简要介绍了分级航天器的规模模型,然后详细讨论了风险调整后的生命周期成本和NPV模型。第三,利用概率论对分馏航天器生命周期内的不确定性来源进行分析和建模。然后阐述了按时间顺序进行的生命周期仿真过程,并使用面向对象的方法开发了仿真模块,以构建评估工具。先前的不确定性模型已集成在这些仿真模块中,因此可以仿真随机对象的状态,并随生命周期时间轴演化。利用所提出的评估工具,进行了一个分馏航天器进行假设地球观测任务的案例研究,结果表明,分馏度和发射清单对成本和净现值有很大的影响,通常分馏航天器比它的先进性高。不确定性影响下的整体对应物。最后,给出了一些结论并突出了未来的研究主题。

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