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首页> 外文期刊>Aerospace science and technology >Segmented sliding mode control-based CubeSat rapid attitude manoeuvre in low magnetic environment
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Segmented sliding mode control-based CubeSat rapid attitude manoeuvre in low magnetic environment

机译:基于滑模控制的秘立力态度低磁环境中的快速姿态机动

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The rapid attitude manoeuvre is a control challenge for a CubeSat in low magnetic environments, which include lunar orbits, geosynchronous (GEO) orbits or other higher Earth orbits. Therefore, a rapid attitude manoeuvre control method based on the segmented sliding mode was proposed for CubeSat in a low magnetic environment. The segmented sliding mode control algorithm was applied to the CubeSat attitude manoeuvre control, where the segmented sliding mode surface was designed to guarantee fast convergence to the origin point of the whole attitude manoeuvre process, and the hyperbolic tangent function was used in the reaching law of the controller to alleviate reaction saturation of the wheels. In addition, innovative control strategies were proposed for the hybrid actuators of the reaction wheels and microthrusters, and a guide rail of the microthruster was innovatively designed to move the microthruster to offset the change in moment of inertia caused by propellant consumption. Finally, hardware-in-loop simulation results reveal that our method has a stronger anti-saturation ability and faster manoeuvre speed than the traditional control method, and the operational life cycle of the thrusters can be accordingly increased. (C) 2021 Elsevier Masson SAS. All rights reserved.
机译:快速态度操纵是一个低磁环境中的立方体的控制挑战,包括月球轨道,地球合子(地理)轨道或其他高地轨道。因此,在低磁环境中提出了一种基于分段滑动模式的快速姿态操纵控制方法。将分段的滑模控制算法应用于立方体姿态操纵控制,其中分段滑动模式表面旨在保证对整个姿态操纵过程的起源点的快速会聚,双曲线切线功能用于到达法律控制器可缓解轮子的反应饱和度。此外,提出了用于反应轮和微观的混合动力致动器的创新控制策略,并且微牙膏的导轨创新地设计用于移动微颗粒以抵消推进剂消耗引起的惯性矩变化。最后,硬件环路仿真结果表明,我们的方法具有更强的抗饱和能力和比传统的控制方法更快的机动速度,并且可以相应地增加推进器的操作生命周期。 (c)2021 Elsevier Masson SAS。版权所有。

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