Shallow Encounters' Impact on Asteroid Deflection Prediction and Implications on Trajectory Design

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Main Authors: Negri, Rodolfo Batista, Prado, Antônio Fernando Bertachini de Almeida
Format: Preprint
Published: 2023
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author Negri, Rodolfo Batista
Prado, Antônio Fernando Bertachini de Almeida
author_facet Negri, Rodolfo Batista
Prado, Antônio Fernando Bertachini de Almeida
contents Analytical approximations are commonly employed in the initial trajectory design phase of a mission to rapidly explore a broad design space. In the context of an asteroid deflection mission, accurately predicting deflection is crucial to determining the spacecraft's trajectory that will produce the desired outcome. However, the dynamics involved are intricate, and simplistic models may not fully capture the system's complexity. This study assesses the precision and limitations of analytical models in predicting deflection, comparing them to more accurate numerical simulations. The findings reveal that encounters with perturbing bodies, even at significant distances (a dozen times the radii of the sphere of influence of the perturbing planet), can markedly disturb the deflected asteroid's trajectory, resulting in notable disparities between analytical and numerical predictions. The underlying reasons for this phenomenon are explained, and provisional general guidelines are provided to assist mission analysts in addressing such occurrences. By comprehending the impact of shallow encounters on deflection, this study equips designers with the knowledge to make informed decisions throughout the trajectory planning process, enhancing the efficiency and effectiveness of asteroid deflection missions.
format Preprint
id arxiv_https___arxiv_org_abs_2308_04613
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Shallow Encounters' Impact on Asteroid Deflection Prediction and Implications on Trajectory Design
Negri, Rodolfo Batista
Prado, Antônio Fernando Bertachini de Almeida
Earth and Planetary Astrophysics
Systems and Control
Analytical approximations are commonly employed in the initial trajectory design phase of a mission to rapidly explore a broad design space. In the context of an asteroid deflection mission, accurately predicting deflection is crucial to determining the spacecraft's trajectory that will produce the desired outcome. However, the dynamics involved are intricate, and simplistic models may not fully capture the system's complexity. This study assesses the precision and limitations of analytical models in predicting deflection, comparing them to more accurate numerical simulations. The findings reveal that encounters with perturbing bodies, even at significant distances (a dozen times the radii of the sphere of influence of the perturbing planet), can markedly disturb the deflected asteroid's trajectory, resulting in notable disparities between analytical and numerical predictions. The underlying reasons for this phenomenon are explained, and provisional general guidelines are provided to assist mission analysts in addressing such occurrences. By comprehending the impact of shallow encounters on deflection, this study equips designers with the knowledge to make informed decisions throughout the trajectory planning process, enhancing the efficiency and effectiveness of asteroid deflection missions.
title Shallow Encounters' Impact on Asteroid Deflection Prediction and Implications on Trajectory Design
topic Earth and Planetary Astrophysics
Systems and Control
url https://arxiv.org/abs/2308.04613