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LOCI: Privacy-aware, Device-free, Low-power Localization of Multiple Persons using IR Sensors

机译:基因座:使用IR传感器的多人无设备,无设备,低功耗定位

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High accuracy and device-free indoor localization is still a holy grail to enable smart environments. With the growing privacy concerns and regulations, it is necessary to develop methods and systems that can be low-power, device-free as well as privacy-aware. While IR-based solutions fit the bill, they require many modules to be installed in the area of interest for higher accuracy, or proper planning during installation, or they may not work if the background has multiple heat-emitting objects, etc. In this paper, we propose a custom-built miniature device called LOCI that uses IR sensing. One unit of LOCI can provide three-dimensional localization at best. LOCI uses only a thermopile and a PIR sensor built within a 5x5x2 cm3 module. Since IR-based sensing is used, LOCI consumes around 80 mW. LOCI uses analog waveform from the PIR sensor with the gain of the PIR sensor dynamically controlled through software in real-time to simulate spatial diversity. LOCI proposes low-complexity techniques with sensor fusion to eliminate the noise in the background, which has not been handled in previous works even with sophisticated signal processing techniques. Since LOCI uses raw data from the thermopile, the computations are power-efficient. We present the complete design of LOCI and the proposed methodology to estimate height and location. LOCI achieves accuracies of sub-22 cm with a confidence of 0.5 and sub-35 cm with a confidence of 0.8. The best-case location accuracy is 12.5 cm. The accuracy of height estimation is within 8 cm in majority cases. LOCI can easily be extended to recognize activities.
机译:高精度和无设备室内本地化仍然是一个圣杯,以实现智能环境。凭借日益增长的隐私问题和规定,有必要开发可能是低功耗,无设备以及隐私感知的方法和系统。虽然基于IR的解决方案适用于账单,但它们需要许多模块安装在兴趣区域中,以获得更高的准确性,或在安装期间进行适当的规划,如果背景有多个发射物体等,则它们可能无法正常工作。纸张,我们提出了一种定制的微型设备,称为使用IR感测的基因座。一个单位的基因座可以最佳提供三维本地化。 LOCI仅使用热电堆,并在5x5x2厘米内构建的PIR传感器 3 模块。由于使用了基于IR的感测,因此基因座消耗了大约80兆瓦。 LOCI使用PIR传感器的模拟波形,PIR传感器的增益在实时通过软件动态控制,以模拟空间分集。基因座提出了具有传感器融合的低复杂性技术,以消除背景中的噪声,即使具有复杂的信号处理技术,也没有在以前的工作中处理。由于LOCI使用来自热电堆的原始数据,因此计算是功率效率的。我们介绍了基因座的完整设计和所提出的方法来估算高度和地点。基因座可置信为0.5和亚35厘米的副22厘米的精度,置信度为0.8。最好的位置精度为12.5厘米。高度估计的准确性在大多数情况下在8厘米范围内。可以轻松扩展洛卡以识别活动。

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