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An integrated design methodology for the deployment of constellations of small satellites

机译:一种综合设计方法,用于部署小卫星星座

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A growing interest in constellations of small satellites has recently emerged due to the increasing capability of these platforms and their reduced time and cost of development. However, in the absence of dedicated launch services for these systems, alternative methods for the deployment of these constellations must be considered which can take advantage of the availability of secondary-payload launch opportunities. Furthermore, a means of exploring the effects and tradeoffs in corresponding system architectures is required. This paper presents a methodology to integrate the deployment of constellations of small satellites into the wider design process for these systems. Using a method of design-space exploration, enhanced understanding of the tradespace is supported, whilst identification of system designs for development is enabled by the application of an optimisation process. To demonstrate the method, a simplified analysis framework and a multiobjective genetic algorithm are implemented for three mission case-studies with differing application. The first two cases, modelled on existing constellations, indicate the benefits of design-space exploration, and possible savings which could be made in cost, system mass, or deployment time. The third case, based on a proposed Earth observation nanosatellite constellation, focuses on deployment following launch using a secondary-payload opportunity and demonstrates the breadth of feasible solutions which may not be considered if only point-designs are generated by a priori analysis. These results indicate that the presented method can support the development of future constellations of small satellites by improving the knowledge of different deployment strategies available during the early design phases and through enhanced exploration and identification of promising design alternatives.
机译:由于这些平台的越来越高的能力及其降低的发展时间和发展成本,最近出现了对小卫星星座的兴趣日益增长。然而,在没有专用的发射服务的这些系统的情况下,必须考虑部署这些星座的替代方法,这可以利用次要有效载荷发射机会的可用性。此外,需要一种探索相应系统架构中的效果和权衡的方法。本文介绍了将小卫星小星座部署到这些系统的更广泛设计过程中的方法。使用设计空间探索的方法,支持对商标通的增强理解,同时通过应用优化过程启用了系统设计的识别。为了证明该方法,为三个任务案例研究实施了简化的分析框架和多目标遗传算法,其具有不同的应用。在现有星座上建模的前两种情况表明了设计空间探索的好处,以及可能的节省,可以以成本,系统质量或部署时间进行。基于所提出的地球观测纳米卫星星座的第三种情况侧重于使用二级有效载荷机会启动后的部署,并演示可行的解决方案的广度,如果仅通过先验分析产生点设计。这些结果表明,本方法可以通过提高早期设计阶段的不同部署策略的知识以及通过加强探索和识别有前途的设计替代方案来支持对小卫星的未来星座的发展。

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