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Dynamic characterization and sail angle control of electric solar wind sail by high-fidelity tether dynamics

机译:高保真系列动力学电动太阳能风帆动态特征及帆角度控制

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This paper investigates the spin rate bounds, the configuration stability subject to the solar wind fluctuations, and sail angle control of an electric solar wind sail (E-sail) by a high-fidelity tether dynamic model. This model describes the elastic deformation of tethers with inter-connected 2-noded tensile elements discretized by the nodal position finite element method. The E-sail is assumed to be an axisymmetric system spinning in the plane normal to the heliocentric ecliptic plane. The upper and lower spin rate bounds are revisited to reveal the physics that dictates these bounds and analytic expressions are provided to ensure the proper operation of E-sail. Then, the influences of the solar wind fluctuations on the configuration stability of the E-sail are investigated by parametric analysis with different E-sail configurations, sail angles, and spin rates. Finally, an alternative sail angle control strategy for the E-sail is proposed by applying control force at the remote units with a simple PD control. Numerical analysis demonstrates that the sail angle of E-sail can be controlled quickly by the control law at the remote units with a high-precision.
机译:本文研究了旋转速率界限,通过高保真系列动态模型对太阳风波波动进行的旋转速率界限,构造稳定性,以及电太阳能风帆(E-SUIL)的帆角度控制。该模型描述了具有由Nodal位置有限元方法离散化的连接间隔的2点张拉伸元件的弹性变形。 e-sail被认为是在正常到的天线心性闪光平面的平面中旋转的轴对称系统。重新预订上部和下部旋转速率界面以揭示规定这些界限的物理学,并提供了分析表达式以确保E-Sail的正常操作。然后,通过使用不同的E-Sail配置,帆角和旋转速率,通过参数分析研究了太阳风波动对E-Sai的配置稳定性的影响。最后,通过在具有简单PD控制的远程单元处应用控制力来提出用于E-SAIL的替代帆角度控制策略。数值分析表明,通过高精度的远程单元的控制法可以快速控制E-Sail的帆角。

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