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Decentralized differential drag based control of nanosatellites swarm spatial distribution using magnetorquers

机译:基于分散的差分阻力控制纳米替尔群群空间分布

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Nanosatellites in the swarm initially move along arbitrary unbounded relative trajectories according to the launch initial conditions. Control algorithms developed in the paper are aimed to achieve the required spatial distribution of satellites in the along-track direction. The paper considers a swarm of 3U CubeSats in LEO, their form-factor is suitable for the aerodynamic control since the ratio of the satellite maximum to minimum cross-section areas is 3. Each satellite is provided with the information about the relative motion of neighboring satellites inside a specified communication area. The paper develops the corresponding decentralized control algorithms using the differential drag force. The required attitude control for each satellite is implemented by the active magnetic attitude control system. A set of decentralized control strategies is proposed taking into account the communicational constraints. The performance of these strategies is studied numerically. The swarm separation effect is demonstrated and investigated.
机译:群中的纳米替浴特尔初始沿着任意无界相对轨迹移动,根据发射初始条件。本文开发的控制算法旨在在沿轨道方向上实现卫星所需的空间分布。本文考虑了Leo中的3U立方体的群,它们的形状因子适用于空气动力学控制,因为卫星最大到最小横截面区域的比率为3.每个卫星提供关于相邻相对运动的信息。在指定的通信区域内的卫星。本文使用差分阻力开发相应的分散控制算法。每个卫星的所需姿态控制由主动磁姿态控制系统实现。考虑到沟通限制,提出了一套分散的控制策略。这些策略的性能在数值上进行了数量。对群体分离效果进行了证明和研究。

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