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Instantaneous Ambiguity Resolution in Global-Navigation-Satellite-System-Based Attitude Determination Applications: A Multivariate Constrained Approach

机译:基于全球导航卫星系统的姿态确定应用中的瞬时歧义解决:多元约束方法

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摘要

Carrier phase integer ambiguity resolution is the key to high-precision Global Navigation Satellite System (GNSS) positioning, navigation, and attitude determination. It is the process of resolving the unknown cycle ambiguities of the carrier phase data as integers. After ambiguity resolution, precise baseline estimates become available, which can be used to derive the attitude of a multi-antenna platform. The purpose of this contribution is to present and test a rigorous GNSS-based attitude determination method, optimally exploiting the complete set of geometrical constraints. The key to this new method is an extension of the popular LAMBDA method: the multivariate constrained LAMBDA. The method estimates the integer ambiguities and the platform's attitude in an integral manner, fully exploiting the known body geometry of the multi-antenna configuration. As a result, the ambiguity resolution performance is greatly unproved. The method is extensively tested addressing the most challenging scenario: single-epoch single-frequency GNSS observations are processed without any filtering, external aid, or dynamic modeling.
机译:载波相位整数模糊度分辨率是高精度全球导航卫星系统(GNSS)定位,导航和姿态确定的关键。这是将载波相位数据的未知周期模糊度解析为整数的过程。解决歧义之后,可以使用精确的基线估计值,该估计值可用于得出多天线平台的姿态。该贡献的目的是提出并测试一种基于GNSS的严格姿态确定方法,以最佳地利用整套几何约束。这种新方法的关键是对流行的LAMBDA方法的扩展:多变量约束LAMBDA。该方法以整数方式估算整数模糊度和平台的姿态,从而充分利用多天线配置的已知主体几何形状。结果,歧义分辨率性能大大地没有得到证明。对该方法进行了广泛测试,以解决最具挑战性的情况:单历时单频GNSS观测数据无需任何滤波,外部辅助或动态建模即可处理。

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