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首页> 外文期刊>IEEE Transactions on Vehicular Technology >Scattering-Model-Based Methods for TOA Location in NLOS Environments
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Scattering-Model-Based Methods for TOA Location in NLOS Environments

机译:NLOS环境中基于散射模型的TOA定位方法

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摘要

In this paper, we address methods of mitigating one of the major issues affecting wireless location accuracy in land mobile terrestrial environments: nonline-of-sight (NLOS) propagation. In order to improve location accuracy under such conditions, we propose a novel methodology for NLOS environments based on the use of scattering models to classify propagation environments. The scattering models allow modeling of the NLOS error so that the NLOS effect can be incorporated into a location algorithm. Through the use of the scattering models, we develop three novel location techniques based on the statistics of measured ranges via moment matching, the expectation maximization algorithm, and a Bayesian algorithm. Simulation results and discussion are given to illustrate the performance in typical NLOS environments. The results show that the algorithms provide improvement over traditional location algorithms.
机译:在本文中,我们解决了减轻影响陆地移动陆地环境中无线定位准确性的主要问题之一的方法:非视距(NLOS)传播。为了提高在这种情况下的定位精度,我们基于散射模型对传播环境进行分类,提出了一种针对NLOS环境的新颖方法。散射模型允许对NLOS误差进行建模,以便可以将NLOS效果合并到定位算法中。通过使用散射模型,我们基于通过矩匹配,期望最大化算法和贝叶斯算法的测量范围的统计数据,开发了三种新颖的定位技术。仿真结果和讨论说明了典型NLOS环境下的性能。结果表明,与传统的定位算法相比,该算法提供了改进。

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