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Nonlinear feedback guidance law for aero-assisted orbit transfer maneuvers

机译:空气辅助轨道转移机动的非线性反馈指导法

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Aero-assisted orbit transfer vehicles have the potential for significantly reducing the fuel requirements in certain classes of orbit transfer operations. Development of a nonlinear feedback guidance law for performing aero-assisted maneuvers that accomplish simultaneous change of all the orbital elements with least vehicle acceleration magnitude is discussed. The analysis is based on a sixth-order nonlinear point-mass vehicle model with lift, banking angle, thrust and drag modulation as the control variables. The guidance law uses detailed vehicle aerodynamic and the atmosphere models in the feedback loop. Higher-order gravitational harmonics, planetary atmosphere rotation and ambient winds are included in the formulation. Due to modest computational requirements, the guidance law can be implemented onboard an orbit transfer vehicle. The guidance law performance is illustrated for three sets of boundary conditions.
机译:航空辅助轨道转移车辆具有显着降低某些轨道转移操作中的燃料需求的潜力。 讨论了对执行空气辅助机动的非线性反馈指导法的发展,以实现具有最小车辆加速度幅度的所有轨道元素的同时变化。 该分析基于具有升力,银行角度,推力和拖曳调制作为控制变量的六阶非线性点质量车辆模型。 指导法使用反馈回路中的详细车辆空气动力学和大气模型。 制剂中包括高阶重力谐波,行星气氛旋转和环境风。 由于适度的计算要求,指导法可以在轨道转移车辆上实施。 指导法绩效示出了三组边界条件。

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