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Improving Galileo orbit determination using zero-difference ambiguity fixing in a Multi-GNSS processing

机译:在Multi-GNSS处理中使用零差歧义固定改进伽利略轨道确定

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Ambiguity fixing to integer numbers of the phase measurements has been proven to ameliorate the accuracy of GNSS data processing. Until now there are two strategies to achieve ambiguity resolution; by forming double differences and by using undifferenced phase measurements. In this article, the potentiality of using the latter method for fixing the phase ambiguities for the Galileo system combined with GPS measurements in a Multi-GNSS solution is proved. The integer property of the Galileo phase clocks is demonstrated. GPS and Galileo phase fixed orbit and "integer" clock products are compared to the float solutions. Both orbit overlaps and orbit validation using satellite laser ranging (SLR) validation methods showed that there is an improvement mainly in the normal and the along track direction. (C) 2018 COSPAR. Published by Elsevier Ltd. All rights reserved.
机译:已经证明将模糊度固定为整数的相位测量值可以改善GNSS数据处理的准确性。到目前为止,有两种解决歧义的策略:通过形成双差和使用无差异的相位测量。在本文中,证明了在Multi-GNSS解决方案中结合GPS测量使用后一种方法来固定伽利略系统的相位模糊性的潜力。演示了伽利略相位时钟的整数属性。将GPS和Galileo相位固定轨道和“整数”时钟产品与浮动解决方案进行了比较。轨道重叠和使用卫星激光测距(SLR)验证方法的轨道验证均表明,主要在法线方向和沿轨道方向上都有改进。 (C)2018年COSPAR。由Elsevier Ltd.出版。保留所有权利。

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