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Integrated guidance and control for reusable launch vehicle in reentry phase

机译:再入阶段可重复使用运载火箭的综合制导和控制

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摘要

An integrated guidance and control scheme is developed for next generation of reusable launch vehicle (RLV) with the aim to improve the flexibility, safety and autonomy. Firstly, an outer-loop optimal feedback reentry guidance law with online trajectory reshaping capability is designed. Then, a novel reentry attitude control strategy is proposed based on multivariables smooth second-order sliding mode controller and disturbance observer. The proposed control scheme is able to guarantee that the guidance commands generated from the guidance system can be tracked in finite time. Furthermore, a control allocation is integrated in the system in order to transform the control moments to control surface deflection. Finally, some representative simulation tests are conducted to demonstrate the effectiveness of the proposed integrated guidance and control strategy for six-degree-of-freedom RLV.
机译:针对下一代可重复使用的运载火箭(RLV)开发了一种综合的制导和控制方案,旨在提高灵活性,安全性和自主性。首先,设计了具有在线轨迹整形能力的外环最优反馈折返制导律。然后,提出了一种基于多变量平滑二阶滑模控制器和扰动观测器的再入姿态控制策略。所提出的控制方案能够保证从引导系统产生的引导命令能够在有限的时间内被跟踪。此外,在系统中集成了控制分配,以便将控制力矩转换为控制表面挠度。最后,进行了一些代表性的模拟测试,以证明所提出的六自由度RLV集成制导和控制策略的有效性。

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