在STEAM中提供空间系统工程知识和技术发展的卫星训练包的建模与仿真

Md. Khairul Bashar Bhuiyan, Md. Shoaib Islam, Tanjidul Islam Sanvi, MD. Jahid Hashan Talukder, Raihana Shams Islam Antara, A. Azad
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摘要

航空航天工程是当今新兴的现代工程学科。为了使学生熟悉这个话题,最近在研究生和研究生阶段进行了许多空间项目。因此,空间技术知识和研究仅限于研究生和博士生。本科生、大学生和中学生没有获得适当的空间相关知识。此外,现在小卫星在教育和研究方面非常受欢迎,因为大卫星对初学者来说太昂贵和太复杂了。对于中小学生和大学生来说,由于空间系统知识的限制,了解卫星的系统和功能是非常困难的。市场上有一些卫星训练包,可以帮助学生了解卫星的系统和结构。然而,为数不多的卫星训练包非常昂贵。这样的卫星训练包的演示,配以适当的方案,可以消除空间教育的有限性,保持学生对卫星技术的兴趣。在本论文设计中,提出了一个系统架构,通过演示、组装、集成和操作卫星训练套件,为学生提供空间系统工程经验。整个体系结构有四个部分:1)仿真,2)机械,3)电气,4)软件。在本文中,为了证明我们的整体概念,我们将完成卫星训练套件的机械和电气仿真。
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Modeling and Simulation of a Satellite Training Kit for Providing Space Systems Engineering Knowledge and Technological Development in STEAM
Aerospace Engineering is an emerging division of modern engineering nowadays. Many space programs have been taken lately at the graduate and post-graduate levels to familiarize the topic to the students. As a result, space technological knowledge and research have been limited to post-graduate and doctorate students. Undergraduate, college and school students do not get proper access to space-related knowledge. Moreover, nowadays small satellites are very popular for educational and research purposes as big satellites are costly and too complex for starters. For school and college students, it is very hard to understand the system and functions of satellites due to the limitation of space system knowledge. There are some satellite training kits in the market that can help the students to understand the systems and structure of a satellite. However, the few available satellite training kits are very much expensive. The demonstration of such a satellite training kit with a proper program can eradicate the limitation of the availability of space education and keep growing interest among the students about satellite technology. In this thesis project, a systematic architecture has been proposed that can provide the students with space systems engineering experience through demonstration, assembly, integration, and operation of a satellite training kit. The whole architecture has four parts - 1) Simulation, 2) Mechanical, 3) Electrical, and 4) Software. In this thesis, to prove our whole concept we will complete the mechanical and electrical simulations of the satellite training kit.
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