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LANDMARK-FREE OPTICAL NAVIGATION AROUND SMALL BODIES: APPLICATION TO THE HAYABUSA2 TOUCHDOWN ON RYUGU

机译:小体上的含有地标光学导航:在Ryugu的Hayabusa2触地区应用

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As for missions that explore small bodies such as asteroids or comets, landmark-based optical navigation is widely used in such operations as descent or landing. The Japanese asteroid explorer Hayabusa2 successfully performed two touchdowns on the asteroid Ryugu in 2019, using one of the landmark-based optical navigation. Hayabusa2 realized the guidance, navigation, and control with accuracy of less than 5 m at the touchdowns. On the other hand, this navigation method strongly depends on the terrain surface of the target celestial bodies, and also requires laborious work to detect sufficient number of landmarks in images. This paper presents an optical navigation method that is independent of landmarks as an advanced study for future missions. The movement of a global surface, rather than a local point, is focused to enable visual tracking without relying on landmarks. The result of the visual tracking yields the pose of the probe via perspective projection equation. The function of the developed method is simulated using the flight data of Hayabusa2.
机译:至于探索小行星或彗星等小型的任务,基于地标的光学导航被广泛用于下降或着陆的这种操作。日本小行星探险家Hayabusa2在2019年成功在2019年在小行星Ryugu进行了两次达阵,其中使用了基于地标的光学导航之一。 Hayabusa2实现了指导,导航和控制,在达阵下的精度小于5米。另一方面,这种导航方法强烈取决于目标天体的地形表面,并且还需要艰苦的工作来检测足够数量的图像中的地标。本文介绍了一种独立于地标作为未来任务的高级研究的光学导航方法。全局表面而不是本地点的运动集中于能够在不依赖地标的情况下实现视觉跟踪。视觉跟踪的结果通过透视投影方程产生探头的姿势。使用Hayabusa2的飞行数据模拟开发方法的功能。

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