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Development of Satellite Attitude Simulink Model to Study the Rotational Degrees of Freedom

机译:研究卫星自转度的卫星姿态Simulink模型的开发

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The role of satellite is enormously increasing in connecting communities and societies to the global information super highway. The typical applications of satellite communication are internet access, news distribution, distant learning, telemedicine, disaster recovery and military applications etc. The attitude of satellite is its orientation in space and its regulation is one of the most important areas for a successful space mission. However, the relationships of kinematics and dynamics used to derive the equations of motion of satellite attitude are very cumbersome and difficult to understand for students at both undergraduate and graduate level. Therefore, in this research work the Simulink model of satellite attitude based on its kinematics and dynamics equations is developed to study and visualize the three rotational degrees of freedom i-e roll, pitch and yaw. The model is developed to visualize two modes of satellite maneuvers i-e Torque free rotations and satellite rotation with attitude thrusters. In first mode the external torque is absent to analyze the rotational stability and control characteristics of satellite and in second mode a pair of attitude thrusters about each principal axis is considered to do attitude maneuvers.
机译:卫星在将社区和社会连接到全球信息高速公路上的作用正在大大提高。卫星通信的典型应用是互联网访问,新闻发布,远程学习,远程医疗,灾难恢复和军事应用等。卫星的态度是其在空间中的方向,其监管是成功完成太空任务的最重要领域之一。然而,用于推导卫星姿态运动方程的运动学和动力学之间的关系非常繁琐,并且对于本科生和研究生来说都是难以理解的。因此,在这项研究工作中,建立了基于其运动学和动力学方程的Simulink卫星姿态模型,以研究和可视化滚动,俯仰和偏航的三个旋转自由度。开发该模型以可视化卫星操纵的两种模式,即扭矩自由旋转和姿态推力器的卫星旋转。在第一种模式下,没有外部扭矩来分析卫星的旋转稳定性和控制特性;在第二种模式下,一对围绕每个主轴的姿态推力器被认为可以进行姿态操纵。

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