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基于实验室的利用多径信道信息的无设备被动定位评估

Lab-Based Evaluation of Device-Free Passive Localization Using Multipath Channel Information.

作者信息

Ninnemann Jonas, Schwarzbach Paul, Jung Andrea, Michler Oliver

机构信息

Institute of Traffic Telematics, Dresden University of Technology, 01069 Dresden, Germany.

出版信息

Sensors (Basel). 2021 Mar 30;21(7):2383. doi: 10.3390/s21072383.

Abstract

The interconnection of devices, driven by the Internet of Things (IoT), enables a broad variety of smart applications and location-based services. The latter is often realized via transponder based approaches, which actively determine device positions within Wireless Sensor Networks (WSN). In addition, interpreting wireless signal measurements also enables the utilization of radar-like passive localization of objects, further enhancing the capabilities of WSN ranging from environmental mapping to multipath detection. For these approaches, the target objects are not required to hold any device nor to actively participate in the localization process. Instead, the signal delays caused by reflections at objects within the propagation environment are used to localize the object. In this work, we used Ultra-Wide Band (UWB) sensors to measure Channel Impulse Responses (CIRs) within a WSN. Determining an object position based on the CIR can be achieved by formulating an elliptical model. Based on this relation, we propose a CIR environmental mapping (CIR-EM) method, which represents a heatmap generation of the propagation environment based on the CIRs taken from radio communication signals. Along with providing imaging capabilities, this method also allows a more robust localization when compared to state-of-the-art methods. This paper provides a proof-of-concept of passive localization solely based on evaluating radio communication signals by conducting measurement campaigns in an anechoic chamber as a best-case environment. Furthermore, shortcomings due to physical layer limitations when using non-dedicated hardware and signals are investigated. Overall, this work lays a foundation for related research and further evaluation in more application-oriented scenarios.

摘要

在物联网(IoT)的推动下,设备之间的互联实现了各种各样的智能应用和基于位置的服务。后者通常通过基于应答器的方法来实现,这种方法能主动确定无线传感器网络(WSN)内设备的位置。此外,对无线信号测量结果的解读还能实现类似雷达的物体被动定位,进一步增强了无线传感器网络从环境测绘到多径检测等方面的能力。对于这些方法,目标物体无需持有任何设备,也无需积极参与定位过程。相反,利用传播环境中物体反射所引起的信号延迟来对物体进行定位。在这项工作中,我们使用超宽带(UWB)传感器在无线传感器网络内测量信道冲激响应(CIR)。基于信道冲激响应确定物体位置可以通过构建椭圆模型来实现。基于这种关系,我们提出了一种信道冲激响应环境测绘(CIR - EM)方法,该方法基于从无线电通信信号中获取的信道冲激响应生成传播环境的热图。除了提供成像能力外,与现有方法相比,该方法还能实现更稳健的定位。本文通过在电波暗室这一最佳环境中开展测量活动,提供了仅基于评估无线电通信信号进行被动定位的概念验证。此外,还研究了使用非专用硬件和信号时由于物理层限制所产生的缺点。总体而言,这项工作为在更多面向应用的场景中进行相关研究和进一步评估奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/16c4/8036639/903f31ea6177/sensors-21-02383-g001.jpg

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