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Modeling and Simulation of a CubeSat Using Nonlinear Control in an Elliptic Orbit

机译:椭圆轨道中非线性控制模拟与仿真

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In this paper we present dynamics and control of a spacecraft in an elliptic orbit. Our contribution is modeling and determination of the angular velocity of the satellite orbit reference frame using a Local Vertical/Local Horizontal (LVLH) orbit reference frame and an orbit propagator without the constraint of no out of plane motion. A non-linear passivity-based sliding surface controller is derived, uniformly asymptotically stability (UAS) is proven, and the control law is adapted to work for magnetic torquers. Simulations are performed on a CubeSat model showing the performance of our model and controller.
机译:在本文中,我们在椭圆轨道中呈现航天器的动态和控制。我们的贡献是使用局部垂直/局部水平(LVLH)轨道参考帧和轨道传播器的卫星轨道参考帧的角速度的建模和确定,而没有平面运动的不约束。衍生出非线性基于滑动表面控制器,均匀呈渐近稳定性(UAS)被证明,并且控制定律适于为磁性扭转工作。在展示模型和控制器性能的CubeSat模型上执行模拟。

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