首页> 外文会议>Proceedings of the 29th Chinese Control Conference >Drag-free and Attitude Control for Long-distance, Low-Earth-orbit, Gravimetric Satellite Formation
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Drag-free and Attitude Control for Long-distance, Low-Earth-orbit, Gravimetric Satellite Formation

机译:长距离,低地球轨道,重力卫星编队的无阻力和姿态控制

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Following the launch in Spring 2009 and operations of the GOCE satellite (Gravity field and steady state Ocean Circulation Explorer), a new mission made by a long-distance (10 km) satellite formation is under study by European Space Agency. It aims at monitoring, during a 6-year mission, Earth's gravity field fluctuations more or less in the same wavelength band of GOCE (around 100-km Earth surface grid). As GOCE is the first 'truly' drag-free satellite, the envisaged formation is expected to be the first drag-free formation, posing a suite of challenging technology and control problems under study and solution, e.g. authors have demonstrated the mission must be all-propulsion. The paper concentrates on a triad of control problems to be solved and coordinated, namely formation, drag-free and attitude, all of them being highly constrained by a long-life low-Earth-orbit mission imposing low propellant mass and therefore electric propulsion, by scarce propulsion throttability of electric thrusters and limited electric power. Requirements will be presented and how they can be met through Embedded Model Control will be outlined. Realistic simulated results are included.
机译:在2009年春季发射并运行GOCE卫星(重力场和稳态海洋环流探测器)之后,欧洲航天局正在研究由长距离(10公里)卫星编队进行的新飞行任务。它的目的是在为期6年的任务中,在相同的GOCE波段(约100公里的地表网格)内监视地球的重力场波动。由于GOCE是第一颗“真正”的无阻力卫星,因此预计的编队将是第一颗无阻力的编队,这将带来一系列具有挑战性的技术和控制问题,正在研究和解决中,例如作者已经证明,使命必须是全力以赴。本文着重于要解决和协调的三方面控制问题,即编队,无阻力和姿态,所有这些都受到寿命长的低地球轨道飞行任务的强力约束,该任务施加了低推进剂质量,因此具有电推进力,电动推进器缺乏推进力和有限的电力。将提出要求,并概述如何通过嵌入式模型控制满足这些要求。包括真实的模拟结果。

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