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3D building model-assisted multipath signal parameter estimation

机译:3D构建模型辅助多径信号参数估计

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Multipath remains a dominant source of error in satellite-based navigation, despite a great deal of effort by researchers and receiver manufacturers to reduce it. Mitigation of multipath errors is especially difficult when the Doppler shift between the direct and secondary propagation paths is very small (approximately 1-2 Hz) and this is usually the case in urban canyons where the reflectors are almost parallel to the direction of motion of the receiver. Multipath parameter estimation is one option; however, the method needs the number of secondary paths in order to estimate the multipath parameters. Moreover, in weak signal environments, the problem becomes more challenging. In this paper we present multipath parameter estimation assisted with a 3D building model to provide the number of secondary paths as well as initial estimates for the relevant delays. The estimation is based on a Least Squares estimation technique using a grid of correlators. The concept is proven using simulated data and tested using real data. Result shows that the accuracy of estimated parameters improves significantly if the estimator is aided with 3D building model information.
机译:多路径仍然是基于卫星的导航误差的主要来源,尽管研究人员和接收器制造商努力降低它很大。多径误差的减轻是特别困难的,当直接与次级传播路径之间的多普勒频移是非常小的(大约1-2赫兹),这通常是在城市峡谷的情况下反射器几乎平行于运动的方向上接收者。多径参数估计是一种选择;然而,该方法需要以估计多径参数的次级路径的数量。此外,在弱信号环境中,问题变得越来越具有挑战性。在本文中,我们本多径参数估计与3D建筑物模型辅助,以提供二次路径的相关的延迟的数目以及初始估计。估计是基于使用相关器的一个网格中的最小二乘估计技术。这个概念是使用模拟数据证明,用真实的数据进行测试。结果表明,参数估计的精度,如果估计与3D建筑模型信息辅助显著提高。

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