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LED-Assisted Three-Dimensional Indoor Positioning for Multiphotodiode Device Interfered by Multipath Reflections

机译:由多径反射干扰的多光电二极管设备的LED辅助三维室内定位

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Indoor positioning for visible light communication (VLC) has gained significant attentions recently with the popularity of light-emitting diodes (LEDs). In this paper, we consider a typical application of VLC by proposing a three-dimensional positioning scheme for a target terminal equipped with multiple photodiodes (PDs). Given the relative coordinates between the target terminal and receiving PDs along with positions of fixed transmitting LEDs, precise location estimation of the terminal device can be achieved via measuring received signal strength (RSS) through line-of-sight (LoS) channels. Moreover, multipath reflections from interior walls are considered as a major interference in non-LoS environment. It is discovered that the positioning error increases linearly with respect to the reflection coefficient of walls, which also verified by simulation results. The positioning error is achieved in millimeter scale under an ideal condition and in decimeter scale with multipath reflections.
机译:室内定位用于可见光通信(VLC)已经与发光二极管(LED)的普及获得最近显著关注。在本文中,我们通过提出一种用于配备有多个光电二极管(PD)的目标终端的三维定位方案考虑VLC的典型应用。给定所述目标终端和接收与固定发射LED的位置沿PD设备之间的相对坐标,所述终端设备的精确位置估计可经由通过管线的视距(LOS)信道测量接收信号强度(RSS)来实现。此外,从内墙多径反射被视为非视距环境产生重大的干扰。它被发现定位误差相对于壁的反射系数,这也通过仿真验证线性增加。在毫米级的理想的条件下和在分米规模与多径反射,实现定位误差。

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