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首页> 外文期刊>Journal of guidance, control, and dynamics >Coverage Area Determination for Conical Fields of View Considering an Oblate Earth
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Coverage Area Determination for Conical Fields of View Considering an Oblate Earth

机译:考虑扁圆地球的圆锥形视场的覆盖范围确定

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This paper introduces a new analytical method for the determination of the coverage area modeling the Earth as an oblate ellipsoid of rotation. Starting from the knowledge of the satellite's position vector and the direction of the navigation antenna line of sight, the surface generated by the intersection of the oblate ellipsoid and the assumed conical field of view is decomposed in many ellipses, obtained by cutting the Earth's surface with every plane containing the navigation antenna line of sight. The geometrical parameters of each ellipse can be derived analytically together with the points of intersection of the conical field of view with the ellipse itself by assuming a proper value of the half-aperture angle or the minimum elevation angle from which the satellite can be considered visible from the Earth's surface. The method can be applied for different types of pointing (geocentric, geodetic, and generic) according to the mission requirements. Finally, numerical simulations compare the classical spherical approach with the new ellipsoidal method in the determination of the coverage area, and also show the dependence of the coverage errors on some relevant orbital parameters.
机译:本文介绍了一种用于确定覆盖区域的新分析方法,该方法将地球建模为扁圆的椭圆形旋转。从对卫星的位置矢量和导航天线视线方向的了解开始,由椭圆形椭圆体和假定的圆锥形视场的交点生成的表面在许多椭圆形中分解,这些椭圆形是通过切割地球表面获得的。每个包含导航天线视线的平面。通过假定适当的半孔径角或最小仰角(可以认为卫星可见)的适当值,可以分析得出每个椭圆的几何参数以及圆锥形视场与椭圆本身的交点。从地球表面。根据任务要求,该方法可以应用于不同类型的指向(地心,大地和普通)。最后,数值模拟将经典的球形方法与新的椭球方法在确定覆盖区域时进行了比较,并显示了覆盖误差对某些相关轨道参数的依赖性。

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