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低功耗蓝牙的信标相关参数:用于研究其对室内定位系统影响的半自动系统的开发

Beacon-Related Parameters of Bluetooth Low Energy: Development of a Semi-Automatic System to Study Their Impact on Indoor Positioning Systems.

作者信息

de Blasio Gabriele Salvatore, Rodríguez-Rodríguez José Carlos, García Carmelo R, Quesada-Arencibia Alexis

机构信息

Institute for Cybernetics, University of Las Palmas de Gran Canaria, Campus de Tafira, 35017 Las Palmas de Gran Canaria, Spain.

出版信息

Sensors (Basel). 2019 Jul 12;19(14):3087. doi: 10.3390/s19143087.

Abstract

Indoor positioning systems (IPS) are used to locate people or objects in environments where the global positioning system (GPS) fails. The commitment to make bluetooth low energy (BLE) technology the leader in IPS and their applications is clear: Since 2009, the Bluetooth Special Interest Group (SIG) has released several improved versions. BLE offers many advantages for IPS, e.g., their emitters or beacons are easily deployable, have low power consumption, give a high positioning accuracy and can provide advanced services to users. Fingerprinting is a popular indoor positioning algorithm that is based on the received signal strength (RSS); however, its main drawbacks are that data collection is a time-consuming and labor-intensive process and its main challenge is that positioning accuracy is affected by various factors. The purpose of this work was to develop a semi-automatic data collection support system in a BLE fingerprinting-based IPS to: (1) Streamline and shorten the data collection process, (2) carry out impact studies by protocol and channel on the static positioning accuracy related to configuration parameters of the beacons, such as transmission power () and the advertising interval (), and their number and geometric distribution. With two types of systems-on-chip (SoCs) integrated in Bluetooth 5 beacons and in two different environments, our results showed that on average in the three BLE advertising channels, the configuration of the highest (+4 dBm) in the beacons produced the best accuracy results. However, the lowest (-20 dBm) did not worsen them excessively (only 11.8%). In addition, in both scenarios, when lowering the density of beacons by around 42.7%-50%, the error increase was only around 8%-9.2%.

摘要

室内定位系统(IPS)用于在全球定位系统(GPS)失效的环境中定位人员或物体。致力于使蓝牙低功耗(BLE)技术成为IPS及其应用领域的领先技术这一点很明确:自2009年以来,蓝牙技术联盟(SIG)已发布了多个改进版本。BLE为IPS提供了许多优势,例如,其发射器或信标易于部署、功耗低、定位精度高,并且可以为用户提供高级服务。指纹识别是一种基于接收信号强度(RSS)的流行室内定位算法;然而,其主要缺点是数据收集是一个耗时且费力的过程,其主要挑战是定位精度受各种因素影响。这项工作的目的是在基于BLE指纹识别的IPS中开发一个半自动数据收集支持系统,以:(1)简化和缩短数据收集过程,(2)通过协议和信道对与信标的配置参数(如发射功率()和广告间隔())及其数量和几何分布相关的静态定位精度进行影响研究。通过将两种片上系统(SoC)集成到蓝牙5信标中并在两种不同环境中进行测试,我们的结果表明,平均而言,在三个BLE广告信道中,信标中最高的(+4 dBm)配置产生了最佳的精度结果。然而,最低的(-20 dBm)并没有使结果过度恶化(仅恶化11.8%)。此外,在两种情况下,当将信标的密度降低约42.7%-50%时,误差增加仅约8%-9.2%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6bda/6679276/09fb6f98ffa2/sensors-19-03087-g001.jpg

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