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Detector Based Radio Tomographic Imaging

机译:基于探测器的射线断层成像

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摘要

Received signal strength based radio tomographic imaging is a popular device-free indoor localization method which reconstructs the spatial loss field of the environment using measurements from a dense wireless network. Existing methods achieve high accuracy localization using a complex system with many sophisticated components. In this work, we propose an alternative and simpler imaging system based on link level occupancy detection. First, we introduce a single-bounce reflection based received signal strength model, which allows relating received signal strength variations to a large region around the link-lines. Then, based on the model, we present methods for all system components including a classifier, a detector, a back-projection based reconstruction algorithm, and a localization method. The introduced system has the following advantages over the other imaging based methods: i) a simple image reconstruction method that is straightforward to implement; ii) significantly lower computational complexity such that no floating point multiplication is required; iii) each link's measured data are compressed to a single bit, providing improved scalability; and iv) physically significant and repeatable parameters. The proposed method is validated using measurement data. Results show that the proposed method achieves the above advantages without loss of accuracy compared to the other available methods.
机译:基于接收信号强度的射线断层成像是一种流行的无设备室内定位方法,它使用密集无线网络的测量值来重建环境的空间损耗场。现有方法使用具有许多复杂组件的复杂系统来实现高精度定位。在这项工作中,我们提出了一种基于链接级别占用检测的替代且更简单的成像系统。首先,我们引入基于单反射反射的接收信号强度模型,该模型允许将接收信号强度变化与链接线周围的较大区域相关联。然后,基于该模型,我们提出了用于所有系统组件的方法,包括分类器,检测器,基于反投影的重建算法和定位方法。与其他基于成像的方法相比,引入的系统具有以下优点:i)一种易于实现的简单图像重建方法; ii)大大降低了计算复杂度,因此不需要浮点乘法; iii)将每个链路的测量数据压缩到单个位,以提高可伸缩性; iv)物理上重要且可重复的参数。使用测量数据验证了该方法的有效性。结果表明,与其他可用方法相比,该方法可以在不损失准确性的情况下实现上述优点。

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