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Indoor Real-Time 3-D Visible Light Positioning System Using Fingerprinting and Extreme Learning Machine

机译:使用指纹和极端学习机的室内实时3-D可见光定位系统

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摘要

Photodiode-based (PD-based) visible light positioning (VLP) has become a research focus of indoor positioning technology, while the existing VLP models rarely consider the anti-interference and positioning time of that. In this paper, indoor real-time three-dimensional visible light positioning system using fingerprinting and extreme learning machine (ELM) is proposed to make the system achieve not only high positioning accuracy and elevated anti-interference but also well-behaved real-time ability. In contrast to the positioning system based on K-Nearest Neighbor or Support Vector Machine, the proposed system achieves the highest positioning accuracy and the state-of-the-art positioning speed. Furthermore, the visible light positioning kernel is proposed as a method to reduce the size of the fingerprint database and thus reduce the training time exponentially. Both the simulation and the experiment results show that the proposed system achieves real-time 3-D positioning with high anti-interference. Therefore, this scheme can be considered as one of the effective methods for indoor 3-D positioning.
机译:基于光电二极管(基于PD的)可见光定位(VLP)已成为室内定位技术的研究重点,而现有的VLP型号很少考虑抗干扰和定位时间。在本文中,提出了使用指纹和极端学习机(ELM)的室内实时三维可见光定位系统,使系统不仅实现高定位精度和抗干扰升高而且表现良好的实时能力。与基于K最近邻居或支持向量机的定位系统相比,所提出的系统实现了最高定位精度和最先进的定位速度。此外,提出了可见光定位内核作为减小指纹数据库尺寸的方法,从而指数地减少训练时间。仿真和实验结果表明,该系统的实时3-D具有高抗干扰的实时定位。因此,该方案可以被认为是室内3-D定位的有效方法之一。

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