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首页> 外文期刊>Acta astronautica >Dynamics and control of an electrodynamic tug: Transfer to the graveyard orbit
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Dynamics and control of an electrodynamic tug: Transfer to the graveyard orbit

机译:电动拖轮的动力学和控制:转移到墓地轨道

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摘要

Space debris transfer to the graveyard orbit is a promising solution for impact mitigation in geosynchronous orbits. This paper is a development on previous work done on the eponymous technique to capture and transfer the debris to graveyard orbit located at 200 km above geostationary orbit. Here, the focus is kept on studying the dynamics and control of the collector-debris system. The debris is assumed to be spherical in shape and composed of a magnetically susceptible material with properties of copper-aluminum alloy. The capture and transfer phase is realized by low-thrust transfer trajectory using electric propulsion engine as main thruster and two control thrusters for continuous actuation of relative position of debris. A feedback control law is developed to ensure that the debris remains at the desired equilibrium position during the transfer maneuver. Stability of the system is investigated using results drawn from numerical simulation. The results show how the choice of control co-efficients affects the stability of the system.
机译:空间碎片转移到墓地轨道是一种有希望的地球同步轨道冲击缓解的解决方案。本文是对以前的工人进行的先前工作的开发,以捕获和将碎片捕获和转移到位于地球静止轨道上200公里的墓地轨道上。在这里,重点是研究收集器 - 碎片系统的动态和控制。假设碎屑形状是球形,并且由具有铜 - 铝合金性质的磁易感材料构成。捕获和转移阶段通过使用电动推进发动机作为主推进器和两个控制推进器来实现用于连续致动碎片的相对位置的两个控制推进器。开发了反馈控制定律,以确保碎片在转移操纵期间仍然处于所需的平衡位置。使用来自数值模拟的结果研究了系统的稳定性。结果表明,控制共同效能的选择如何影响系统的稳定性。

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