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Hyperbolic Positioning with Antenna Arrays and Multi-Channel Pseudolite for Indoor Localization

机译:用于室内定位的带有天线阵列和多通道伪卫星的双曲线定位

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摘要

A hyperbolic positioning method with antenna arrays consisting of proximately-located antennas and a multi-channel pseudolite is proposed in order to overcome the problems of indoor positioning with conventional pseudolites (ground-based GPS transmitters). A two-dimensional positioning experiment using actual devices is conducted. The experimental result shows that the positioning accuracy varies centimeter- to meter-level according to the geometric relation between the pseudolite antennas and the receiver. It also shows that the bias error of the carrier-phase difference observables is more serious than their random error. Based on the size of the bias error of carrier-phase difference that is inverse-calculated from the experimental result, three-dimensional positioning performance is evaluated by computer simulation. In addition, in the three-dimensional positioning scenario, an initial value convergence analysis of the non-linear least squares is conducted. Its result shows that initial values that can converge to a right position exist at least under the proposed antenna setup. The simulated values and evaluation methods introduced in this work can be applied to various antenna setups; therefore, by using them, positioning performance can be predicted in advance of installing an actual system.
机译:为了克服传统伪卫星(基于地面的GPS发射器)在室内定位的问题,提出了一种由天线阵列组成的双曲线定位方法,该天线阵列由位于附近的天线和多信道伪卫星组成。使用实际设备进行了二维定位实验。实验结果表明,定位精度根据伪卫星天线与接收器之间的几何关系在厘米至米的范围内变化。这也表明,载波相位差可观测值的偏差误差比其随机误差更为严重。根据从实验结果反算得到的载波相位差的偏差误差的大小,通过计算机仿真评估三维定位性能。另外,在三维定位场景中,对非线性最小二乘法进行了初始值收敛分析。结果表明,至少在建议的天线设置下,可以收敛到正确位置的初始值存在。这项工作中介绍的仿真值和评估方法可以应用于各种天线设置。因此,通过使用它们,可以在安装实际系统之前预测定位性能。

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