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GNSS Single Frequency Single Epoch Reliable Attitude Determination Method with Baseline Vector Constraint

机译:具有基线矢量约束的GNSS单频单历元可靠姿态确定方法

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摘要

For Global Navigation Satellite System (GNSS) single frequency, single epoch attitude determination, this paper proposes a new reliable method with baseline vector constraint. First, prior knowledge of baseline length, heading, and pitch obtained from other navigation equipment or sensors are used to reconstruct objective function rigorously. Then, searching strategy is improved. It substitutes gradually Enlarged ellipsoidal search space for non-ellipsoidal search space to ensure correct ambiguity candidates are within it and make the searching process directly be carried out by least squares ambiguity decorrelation algorithm (LAMBDA) method. For all vector candidates, some ones are further eliminated by derived approximate inequality, which accelerates the searching process. Experimental results show that compared to traditional method with only baseline length constraint, this new method can utilize a priori baseline three-dimensional knowledge to fix ambiguity reliably and achieve a high success rate. Experimental tests also verify it is not very sensitive to baseline vector error and can perform robustly when angular error is not great.
机译:对于全球导航卫星系统(GNSS)的单频,单历元姿态确定,提出了一种新的具有基线矢量约束的可靠方法。首先,从其他导航设备或传感器获得的基线长度,航向和俯仰的先验知识可用于严格重建目标函数。然后,改进了搜索策略。它逐步将扩大的椭圆搜索空间替换为非椭圆搜索空间,以确保正确的模糊度候选者位于其中,并使搜索过程直接通过最小二乘法模糊解相关算法(LAMBDA)进行。对于所有候选向量,通过推导的近似不等式进一步消除了一些候选向量,从而加快了搜索过程。实验结果表明,与仅具有基线长度约束的传统方法相比,该新方法可以利用先验基线三维知识可靠地解决歧义并获得较高的成功率。实验测试还证明,它对基线矢量误差不是很敏感,并且在角度误差不大时可以稳定运行。

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