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3U CUBESAT FOR THE CANADIAN SATELLITE DESIGN CHALLENGE: A POLYTECHNIQUE MONTRéAL AND UNIVERSITY OF BOLOGNA COOPERATION

机译:3U CubeSat为加拿大卫星设计挑战:一位莫特科尼克蒙特拉尔和博洛尼亚大学合作

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We introduce a joint research project that stems from the international collaboration between Polytechnique Montréal (Quebec, Canada) and the University of Bologna (Italy), partners in the second edition of the Canadian Satellite Design Challenge. This collaboration represents a great opportunity to learn the keys of successful international teamwork and to experience different cultures. To pursue this goal, the team is structured as we would see in commercial missions; a customer and a contractor. The customer is Polytechnique Montréal, who will design the satellite structure and subsystems. University of Bologna will act as a contractor and will develop the primary payload. The teams will work in their respective country, but have regular meetings via teleconference. The organization of this project represents an important educational aspect that both teams will retain. The mission itself consists of the development of a 3U CubeSat whose primary payload is a deorbiting system based on an innovative drag sail. The research objective is to test the deployment of the sail and to evaluate its performance in terms of orbit lifetime reduction. The deorbiting system is developed by the team located in University of Bologna and is designed as a plug-and-play module to make its integration effortless and affordable. The separation will also make the deorbiting system robust to failures. The secondary payload is an image capturing system for Earth observation. This system provides images of the Canadian Arctic region for research of the Geocryolab (Laboratory of Geotechnics and Geomorphology of Cold Regions) of the Université de Montréal, to study the evolution of periglacial landforms. In addition, with the images captured by this system available for free on our website, we hope to raise the awareness of the effects of global warming. Finally, the satellite's structure is designed not only to support this particular mission, but also to be modifiable for multiple nano-satellite configurations. The project also aims at promoting interest for spacecraft systems engineering, satellites and international cooperation throughout our communities. This will be achieved with strong outreach of our project, the challenges we faced and the way they were solved.
机译:我们介绍了一项联合研究项目,源于蒙特里尔(魁北克,加拿大)和博洛尼亚大学(意大利)的国际合作,在加拿大卫星设计挑战中的第二版合作伙伴。该协作代表了学习成功国际团队合作的关键的绝佳机会,并体验不同的文化。为了追求这一目标,团队在商业任务中看到的那样构成;客户和承包商。客户是PolytechniqueMontréal,他们将设计卫星结构和子系统。博洛尼亚大学将作为承包商并将制定主要有效载荷。团队将在各自的国家工作,但通过电话会议定期会议。该项目的组织代表了两个团队将保留的重要教育方面。特派团本身包括开发3U CubeSat,其主要有效载荷是基于创新拖帆的防扰系统。研究目标是测试帆的部署,并在轨道寿命减少方面评估其性能。防扰工系统由位于波隆纳大学的团队开发,设计为即插即用模块,以使其集成毫不费力和实惠。分离也将使遮雨系统变得鲁棒。二次有效载荷是用于地球观察的图像捕获系统。该系统提供了加拿大北极地区的图像,用于研究大学蒙特利尔大学的Geocryolab(岩土学岩石实验室),研究了荔枝地貌的演变。此外,在我们的网站上免费提供此系统捕获的图像,我们希望提高对全球变暖影响的认识。最后,卫星的结构不仅设计用于支持这种特殊的任务,还可以将可修改用于多种纳米卫星配置。该项目还旨在促进整个社区促进对航天器系统工程,卫星和国际合作的利益。这将通过强烈的外展,我们面临的挑战和他们解决的方式实现。

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