The increase in the application of the satellite has skyrocketed the number of satellites, especially in the low earth orbit. The major concern today is after the end of life, these satellites become debris which negatively affects the space environment. As per the international guidelines of the European Space Agency, it is mandatory to deorbit the satellite within 25 years of the end of life. StudSat1, which was successfully launched on 12th July 2010, is the first Pico satellite developed in India by undergraduate students from seven different engineering colleges across South India. Now, the team is developing StudSat2, which is India's first twin satellite mission having two nanosatellites whose overall mass is less than 10kg. This paper is aimed to design the propulsion system, cold gas thruster, to deorbit StudSat2 from its original orbit i.e. 600 km to lower orbit i.e. 400km. The propulsion system mainly consists of a storage tank, pipes, Convergent Divergent nozzle, and electronic actuators. The paper also gives information about the components of cold gas thruster, which have been designed in the CATIA V5, and the structural and flow analysis of the same has been done in ANSYS. The concept of Hohmann transfer has been used to deorbit the satellite and STK has been used to simulate it.
翻译:卫星应用的增加使卫星数量猛增,特别是在低地球轨道上。今天,主要关切是寿命结束后,这些卫星成为碎片,对空间环境产生不利影响。根据欧洲航天局的国际指导方针,卫星在寿命结束25年内必须脱轨。StudSat1是2010年7月12日成功发射的印度第一颗Pico卫星,这是印度南部7个不同工程学院本科生开发的Pico卫星。现在,该小组正在开发StudSat2号,这是印度的首个双卫星任务,拥有两颗总体质量低于10公斤的超小型卫星。这份文件旨在设计推进系统,冷气推进器,使StudSat2从原来的轨道,即600公里到更低的轨道脱轨,即400公里。推进系统主要由储罐、管道、Convergent Divergent喷嘴和电子电动器组成。该文件还介绍了在CATIA V5中设计的冷气推进器的部件,这是印度的首个双卫星,其总质量低于10公斤。这份文件的目的是设计了推进系统,冷气推进系统,冷气推进器的推进器推进器推进器,冷气推进器从原来的推进器推进器从原来的推进器推进器推进器从原来的600公里到HSq-Sq-Sqroqroqroft 已经用于轨道向AS。