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A Time-based Passive Source Localization System for Narrow-band Signal

机译:一种基于时间的窄带信号源定位系统

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摘要

Time-based indoor localization has been investigated for several years but the accuracy of existing solutions is limited by several factors, e.g., imperfect synchronization, signal bandwidth and indoor environment. In this paper, we compare two time-based localization algorithms for narrow-band signals, i.e., multilateration and fingerprinting. First, we develop a new Linear Least Square (LLS) algorithm for Differential Time Difference Of Arrival (DTDOA). Second, fingerprinting is among the most successful approaches used for indoor localization and typically relies on the collection of measurements on signal strength over the area of interest. We propose an alternative by constructing fingerprints of fine-grained time information of the radio signal. We offer comprehensive analytical discussions on the feasibility of the approaches, which are backed up by evaluations in a software defined radio based IEEE 802.15.4 testbed. Our work contributes to research on localization with narrow-band signals. The results show that our proposed DTDOA-based LLS algorithm obviously improves the localization accuracy compared to traditional TDOA-based LLS algorithm but the accuracy is still limited because of the complex indoor environment. Furthermore, we show that time-based fingerprinting is a promising alternative to power-based fingerprinting.
机译:基于时间的室内定位已被研究了多年,但是现有解决方案的准确性受到多个因素的限制,例如,不完美的同步,信号带宽和室内环境。在本文中,我们比较了两种基于时间的窄带信号定位算法,即多边定位和指纹识别。首先,我们针对到达时间差(DTDOA)开发了一种新的线性最小二乘(LLS)算法。其次,指纹识别是用于室内定位的最成功方法之一,通常依赖于对感兴趣区域上信号强度的测量结果的收集。通过构造无线电信号的细粒度时间信息的指纹,我们提出了一种替代方案。我们对方法的可行性提供了全面的分析讨论,这些讨论得到了软件定义的基于无线电的IEEE 802.15.4测试平台中的评估的支持。我们的工作有助于研究窄带信号的定位。结果表明,与传统的基于TDOA的LLS算法相比,我们提出的基于DTDOA的LLS算法明显提高了定位精度,但由于室内环境复杂,精度仍然受到限制。此外,我们表明基于时间的指纹识别是基于功率的指纹识别的有希望的替代方法。

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