首页> 外文会议>AAS/AIAA Space Flight Mechanics Meeting; 20060122-26; Tampa,FL(US) >SOLAR SAIL NAVIGATION: ESTIMATION OF FORCE, MOMENTS, AND OPTICAL PARAMETERS
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SOLAR SAIL NAVIGATION: ESTIMATION OF FORCE, MOMENTS, AND OPTICAL PARAMETERS

机译:太阳能航行:力,力矩和光学参数的估计

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Determining a solar sail's propulsion model on the ground is an inherently difficult task. Uncertainties in the sail shape are always present since the sail's precise curvature and surface structure may change after deployment in space. These changes may invalidate previous measurements and computations. For accurate navigation, it is essential that the post-launch sail propulsion model is estimated. In this paper, we provide a methodology for estimating the force and moment generated by a sail of arbitrary, but constant, shape based on in-flight data. This is accomplished by finding the force and moment tensor coefficients defined by the generalized sail model, which models the propulsion characteristics of solar sails with arbitrary shapes. Several data sampling examples are studied to determine the attitudes that allow for better estimation of the sail's force and moment coefficients.
机译:确定地面上太阳帆的推进模型是一项固有的难题。由于帆的精确曲率和表面结构在空间中展开后可能会发生变化,因此帆形状始终存在不确定性。这些更改可能会使以前的测量和计算无效。为了进行准确的导航,至关重要的是要估计发射后的帆推进模型。在本文中,我们提供了一种基于飞行中数据估算任意形状但恒定形状的帆产生的力和力矩的方法。这是通过找到广义帆模型定义的力和力矩张量系数来实现的,该模型对具有任意形状的太阳帆的推进特性进行建模。研究了几个数据采样示例,以确定可以更好地估计帆力和力矩系数的姿态。

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