Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
8055515 | Acta Astronautica | 2018 | 26 Pages |
Abstract
In recent years, the investigation of moons and planets has attracted increasing attention in several countries. Furthermore, recently developed landing systems are now expected to reach more scientifically interesting areas close to hazardous terrain, requiring precise landing capabilities within a 100â¯m range of the target point. To achieve this, terrain-relative navigation (capable of estimating the position of a lander relative to the target point on the ground surface is actively being studied as an effective method for achieving highly accurate landings. This paper proposes a self-position estimation method using shadows on the terrain based on edge extraction from image processing algorithms. The effectiveness of the proposed method is validated through numerical simulations using images generated from a digital elevation model of simulated terrains.
Keywords
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Physical Sciences and Engineering
Engineering
Aerospace Engineering
Authors
Tomoki Kuga, Hirohisa Kojima,