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Coordinate Parameters Eliminated and Stepwise Ambiguities Resolution Method for Mid-Long Baseline

机译:中长期基线的消除坐标参数和逐步歧义解决方法

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The high precision relative positioning is one of the key conditions of multiple earth-observation satellites differential observation. Usually, the earth-observation satellites' relative positions are got by GNSS differential positioning. The key technology of GNSS high precision differential positioning is carrier phase AR (Ambiguity Resolution). The distance between two earth-observation satellites is from several kilometers to several hundreds kilometers. So it's a problem of ambiguities resolution for mid-long distance baseline. There are a lot of difficulties to solve this kind of ambiguities such as large double difference systematic errors. In order to solve these difficulties, this paper proposed a fast and kinematic AR method named as CPES (Coordinate Parameters Eliminated and Stepwise) method which is based on LAMBDA method. At first, the primary theories of this method are introduced. Then, the steps from wide-lane ambiguities resolution to L1, L2 ambiguities resolution are proposed. Lastly, several examples' results show that this AR method has the advantages of fast speed and high reliability.c
机译:高精度相对定位是多对地观测卫星差分观测的关键条件之一。通常,对地观测卫星的相对位置是通过GNSS差分定位获得的。 GNSS高精度差分定位的关键技术是载波相位AR(歧义度解析度)。两颗地球观测卫星之间的距离从几公里到几百公里。因此,这是中长距离基线的歧义解决问题。解决这类歧义有很多困难,例如大的双差系统误差。为了解决这些困难,本文提出了一种基于LAMBDA方法的快速运动学AR方法,称为CPES(消除和逐步调整坐标参数)方法。首先,介绍了该方法的主要理论。然后,提出了从宽车道模糊度解析到L1,L2模糊度解析的步骤。最后,通过算例分析表明,该AR方法具有速度快,可靠性高的优点。c

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