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Trajectory Control of Rendezvous with Maneuver Target Spacecraft

机译:机动目标航天器交会轨迹控制

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摘要

In this paper, a nonlinear trajectory control algorithm of rendezvous with maneuvering target spacecraft is presented. The disturbance forces on the chaser and target spacecraft and the thrust forces on the chaser spacecraft are considered in the analysis. The control algorithm developed in this paper uses the relative distance and relative velocity between the target and chaser spacecraft as the inputs. A general formula of reference relative trajectory of the chaser spacecraft to the target spacecraft is developed and applied to four different proximity maneuvers, which are in-track circling, cross-track circling, in-track spiral rendezvous and cross-track spiral rendezvous. The closed-loop differential equations of the proximity relative motion with the control algorithm are derived. It is proven in the paper that the tracking errors between the commanded relative trajectory and the actual relative trajectory are bounded within a constant region determined by the control gains. The prediction of the tracking errors is obtained. Design examples are provided to show the implementation of the control algorithm. The simulation results show that the actual relative trajectory tracks the commanded relative trajectory tightly. The predicted tracking errors match those calculated in the simulation results. The control algorithm developed in this paper can also be applied to interception of maneuver target spacecraft and relative trajectory control of spacecraft formation flying.
机译:提出了机动目标航天器交会的非线性轨迹控制算法。分析中考虑了追赶者和目标航天器上的干扰力以及追赶者航天器上的推力。本文开发的控制算法使用目标和追逐航天器之间的相对距离和相对速度作为输入。研制了追赶航天器对目标航天器的参考相对轨迹的一般公式,并将其应用于轨道绕行,交叉轨道绕行,轨道内螺旋会合和交叉轨道螺旋会合的四种不同的接近操纵。利用控制算法推导了近似相对运动的闭环微分方程。本文证明,指令相对轨迹与实际相对轨迹之间的跟踪误差限制在由控制增益确定的恒定区域内。获得跟踪误差的预测。提供了设计示例以显示控制算法的实现。仿真结果表明,实际相对轨迹紧密跟踪指令的相对轨迹。预测的跟踪误差与仿真结果中计算出的误差匹配。本文开发的控制算法还可以应用于机动目标航天器的拦截和航天器编队飞行的相对轨迹控制。

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  • 作者

    Zhou, Zhinqiang;

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  • 年度 2012
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