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Polyhedron tracking and gravity tractor asteroid deflection

机译:多面体跟踪和重力牵引小行星偏转

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In the wake of the Chelyabinsk airburst, the defense against hazardous asteroids is becoming a topic of high interest This work improves the gravity tractor asteroid deflection approach by tracking realistic small body shapes with tilted ion engines. An algorithm for polyhedron tracking was evaluated in a fictitious impact scenario. The simulations suggest a capability increase up to 38.2% with such improved tilting strategies. The long- and short-term effects within polyhedron tracking are illustrated. In particular, the orbital reorientation effect is influential when realistic asteroid shapes and rotations are accounted for. Also analyzed is the subject of altitude profiles, a way to tailor the gravity tractor performance, and to achieve a steering ability within the B-plane. A novel analytical solution for the classic gravity tractor is derived. It removes the simulation need for classic tractor designs to obtain comparable two body model Av figures. This paper corroborates that the asteroid shape can be exploited for maximum performance. Even a single engine tilt adjustment at the beginning of deflection operations yields more deflection than a fixed preset tilt.
机译:在车里雅宾斯克州发生空袭之后,对危险小行星的防御已成为人们高度关注的话题。这项工作通过使用倾斜的离子发动机跟踪现实的小体形来改进重力拖拉机小行星的偏转方法。在虚拟的影响场景中评估了用于多面体跟踪的算法。仿真结果表明,采用这种改进的倾斜策略,可将能力提高38.2%。说明了多面体跟踪中的长期和短期影响。特别是,当考虑到实际的小行星形状和旋转时,轨道重新定向效果会产生影响。还分析了海拔曲线的主题,这是一种调整重力拖拉机性能并在B平面内实现转向能力的方法。推导了经典重力拖拉机的新型分析解决方案。它消除了对经典拖拉机设计进行仿真以获得可比较的两个车身模型Av值的需求。本文证实可以利用小行星形状来获得最佳性能。甚至在偏转操作开始时仅进行一次发动机倾斜调整也比固定的预设倾斜产生更大的偏转。

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