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A Study into the Method of Precise Orbit Determination of a HEO Orbiter by GPS and Accelerometer

机译:GPS和加速度计精确轨道轨道测定方法的研究

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In the present day, orbit determination by Global Positioning System (GPS) is not unusual. Especially for low-cost small satellites, position determination by an on-board GPS receiver provides a cheap, reliable and precise method. However, the original purpose of GPS is for ground users, so the transmissions from all of the GPS satellites are directed toward the Earth's surface. Hence there are some restrictions for users above the GPS constellation to detect those signals. On the other hand, a desire for precise orbit determination for users in orbits higher than GPS constellation exists. For example, the next Japanese Very Long Baseline Interferometry (VLBI) mission "ASTRO-G" is trying to determine its orbit in an accuracy of a few centimetres at apogee. The use of GPS is essential for such ultra accurate orbit determination. This study aims to construct a method for precise orbit determination for such high orbit users, especially in High Elliptical Orbits (HEOs). There are several approaches for this objective. In this study, a hybrid method with GPS and an accelerometer is chosen. Basically, while the position cannot be determined by an on-board GPS receiver or other Range and Range Rate (RARR) method, all we can do to estimate the user satellite's position is to propagate the orbit along with the force model, which is not perfectly correct. However if it has an accelerometer (ACC), the coefficients of the air drag and the solar radiation pressure applied to the user satellite can be updated and then the propagation along with the "updated" force model can improve the fitting accuracy of the user satellite's orbit. In this study, it is assumed to use an accelerometer available in the present market. The effects by a bias error of an accelerometer will also be discussed in this paper.
机译:在本天,全球定位系统(GPS)的轨道确定并不罕见。特别是对于低成本的小卫星,板载GPS接收器的位置测定提供了廉价,可靠和精确的方法。然而,GPS的原始目的是用于接地用户,因此来自所有GPS卫星的传输都针对地球表面。因此,GPS星座上方的用户有一些限制以检测这些信号。另一方面,存在对高于GPS星座的轨道中的用户的精确轨道确定的欲望。例如,下一个日本人非常长的基线干涉测量(VLBI)任务“Astro-G”正试图以近几厘米的准确性确定其轨道。 GPS的使用对于这种超准确的轨道测定是必不可少的。本研究旨在构建一种用于这种高轨道用户的精确轨道确定的方法,尤其是在高椭圆轨道(HEO)中。这个目标有几种方法。在本研究中,选择具有GPS和加速度计的混合方法。基本上,虽然该位置不能通过板上GPS接收器或其他范围和范围率(RARR)方法来确定,但我们可以做的一切估计用户卫星的位置是将轨道与力模型一起传播,这不是完全正确。然而,如果它具有加速度计(ACC),则可以更新空气拖动的系数和应用于用户卫星的太阳辐射压力,然后与“更新”的力模型一起传播可以提高用户卫星的拟合精度轨道。在这项研究中,假设在目前市场使用加速度计。本文还将讨论加速度计的偏差误差的影响。

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