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Error compensation in indoor positioning systems based on software defined visible light communication

机译:基于软件定义的可见光通信的室内定位系统误差补偿

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摘要

Visible Light Communication (VLC) paradigm allows the reusing of existing illuminating infrastructures in order to provide data communication. VLC can be considered a promising technology also for positioning in indoor environments, due to its potentially high accuracy and low costs. However, the main obstacle to the use of VLC for localization purposes is the high level of environmental noises, mainly due to sunlight. A novel approach, for easily measuring environmental noises and compensating their effects on localization results performed by an Indoor Positioning System (IPS) based on VLC, is proposed in this work. Frequency Division Multiplexing (FDM) is adopted to divide the total bandwidth into a series of non-overlapping frequency sub-bands corresponding to each signal, while an estimation of Signal to Noise Ratio (SNR), obtained through real time Power Spectral Density measurements in the proper frequency ranges, is exploited to compensate the error in positioning due to sunlight and other wide-band external optical disturbing signals. The proposed approach has been validated through experimental tests, carried out using a simple deployment of low power lamps, low cost hardware and a software defined approach. In the region under test, receiver position has been experimentally detected with higher accuracy in comparison to classical FDM approach, confirming the correctness and effectiveness of our proposed technique. In order to further validate the proposed approach, an additive measurement campaign has been successfully carried out considering a scenario characterized by very low SNR levels. (C) 2019 Elsevier B.V. All rights reserved.
机译:可见光通信(VLC)范式允许重用现有的照明基础架构以提供数据通信。由于其潜在的高精度和低成本,VLC也可以被认为是在室内环境中定位的有希望的技术。然而,使用VLC的主要障碍用于本地化目的是高水平的环境噪音,主要是由于阳光。在这项工作中提出了一种新的方法,用于易于测量环境噪声并补偿它们对基于VLC的室内定位系统(IPS)执行的本地化结果的影响。采用频分复用(FDM)将总带宽分成与每个信号对应的一系列非重叠频率子带进行划分,同时通过实时功率谱密度测量获得的信噪比(SNR)的估计采用适当的频率范围,以补偿由于阳光和其他宽带外部光学干扰信号引起的定位误差。通过实验测试验证了所提出的方法,使用简单部署低功耗灯,低成本硬件和软件定义方法进行。在被测区域,与古典FDM方法相比,接收器位置具有更高的精度,确认了我们所提出的技术的正确性和有效性。为了进一步验证所提出的方法,考虑到具有非常低的SNR水平的场景,成功地进行了添加剂测量运动。 (c)2019 Elsevier B.v.保留所有权利。

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  • 来源
    《Physical Communication》 |2019年第6期|235-245|共11页
  • 作者

    Costanzo A.; Loscri V.;

  • 作者单位

    INRIA Lille Nord Europe 40 Ave Halley F-59650 Villeneuve Dascq France;

    INRIA Lille Nord Europe 40 Ave Halley F-59650 Villeneuve Dascq France;

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  • 正文语种 eng
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