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ORBIT CONTROL OF ASTEROIDS IN LIBRATION POINT ORBITS FOR RESOURCE EXPLOITATION

机译:资源开发的自由点轨道中的小行星轨道控制

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The fascinating idea of shepherding asteroids for science and resource utilisation is being considered as a very credible concept in a not too distant future. Past studies have identified asteroids which could be injected into manifolds which wind onto periodic orbits around collinear Lagrangian points of the Sun-Earth system, by means of a low-cost manoeuvre. However, the periodic orbits as well as the manifolds are highly unstable, and small errors in the capture manoeuvre would bring to complete mission failure, with potential danger of collision with the Earth itself. The main source of injection error in position and velocity is the epistemic uncertainty of the asteroid mass, which cannot be measured directly. For this reason, asteroid orbit control will be a strict requirement for such mission. This paper investigates the controllability of some asteroids during the transfer and along the period orbits, assuming the use of a solar-electric low-thrust engine. The control scheme is based on a linear quadratic regulator. A stochastic simulation with a Monte Carlo approach is used to simulate a range of different perturbed initial conditions. Results show that only a small subset of the considered combinations of trajectories/asteroids are reliably controllable, and therefore controllability must be taken into account in the selection of potential targets.
机译:牧羊犬的迷人想法是科学和资源利用的迷人观念被认为是一个不太遥远的未来非常可靠的概念。过去的研究已经鉴定了各小行星,其可以注入歧管,通过低成本的操纵,通过低成本的操纵来注入歧管的歧管,该歧管在太阳地球系统的共线地球系统的聚光灯点周围的轨道上。然而,周期性轨道以及歧管是高度不稳定的,捕获机动中的小错误将带来完成任务失败,具有与地球本身碰撞的潜在危险。位置和速度的喷射误差的主要来源是小行星质量的认知不确定度,这不能直接测量。出于这个原因,小行星轨道控制将严格要求此类任务。本文调查了在转移过程中和沿着时期轨道期间的某些小行星的可控性,假设使用太阳能电动低推力发动机。控制方案基于线性二次调节器。具有蒙特卡罗方法的随机仿真用于模拟一系列不同的扰动初始条件。结果表明,只有轨迹/小行星的考虑组合的小子集可靠地控制,因此必须在潜在目标的选择中考虑可控性。

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