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PN Gravitational Perturbations on Artificial Satellite Orbits Using Hori-Lie Transformation

机译:使用Hori-Lie变换的人造卫星轨道上的PN引力摄动

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In the present work, we develop an analytical theory of Low Earth Orbits (in brief "LEO") of artificial satellites moving in the Earth's gravity field. The relativistic corrections arising from the Schwarzschild solution and Earth's oblateness to the Earth's gravity field are considered and are expanded in a series form. The theory was developed on the basis of the Hori-Lie canonical transformations method. Secular and periodic perturbations in the orbital elements due to the geopotential (zonal and tesseral harmonics) of an arbitrary degree and order, and the relativistic corrections are computed up to third and second order respectively. Numerical applications to a LEO are introduced. The theory was tested for different satellite orbits and compared with results of numerical integrations.
机译:在当前的工作中,我们开发了一种在地球重力场中移动的人造卫星的低地球轨道(简称“ LEO”)的分析理论。 Schwarzschild解和地球相对于地球重力场的扁率引起的相对论校正被考虑并以一系列形式扩展。该理论是根据Hori-Lie规范变换方法开发的。由于任意程度和阶数的地势(区域和地平面谐波)而引起的轨道元素的长期和周期性扰动,以及相对论校正分别被计算到三阶和二阶。介绍了LEO的数值应用。该理论已针对不同的卫星轨道进行了测试,并与数值积分的结果进行了比较。

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