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Carrier Phase Method for Indoor Pseudolite Positioning System

机译:室内伪定位系统的载体相位方法

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In many pseudolite systems which recently have been proposed and tested for indoor navigation, the method of ambiguity resolution was static initialization. Using pseudolites for static initialization, the equations are correlated with each other at observation epochs and the ambiguities can't be calculated from the equations. The initial position of rover needed to be known in this method. In this paper, an ambiguity resolution on the fly method is proposed. The method uses kinematic initialization for ambiguity resolution instead of the assuming the initial rover position is known. To demonstrate the validity of the method, simulation results based on realistic indoor positioning environments are also studied.
机译:在最近已经提出和测试室内导航的许多伪体系中,歧义分辨率的方法是静态初始化。使用Psudolites进行静态初始化,在观察时期的观察时,等式彼此相关,并且无法从方程计算歧义。在这种方法中需要罗弗的初始位置。在本文中,提出了对飞行方法的模糊分辨率。该方法使用用于歧义分辨率的运动初始化而不是假设初始流动站位置是已知的。为了证明方法的有效性,还研究了基于现实室内定位环境的仿真结果。

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