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利用接近传感器和远红外热传感器阵列提高基于蓝牙低功耗的定位系统性能

Improving Performance of Bluetooth Low Energy-Based Localization System Using Proximity Sensors and Far-Infrared Thermal Sensor Arrays.

作者信息

Djaja-Josko Vitomir, Kolakowski Marcin, Cichocki Jacek, Kolakowski Jerzy

机构信息

Institute of Radioelectronics and Multimedia Technology, Warsaw University of Technology, 00-661 Warsaw, Poland.

出版信息

Sensors (Basel). 2025 Feb 13;25(4):1151. doi: 10.3390/s25041151.

Abstract

This paper presents the concept of a hybrid positioning scheme using results from a Bluetooth Low Energy (BLE)-based system and additional infrared (IR) devices: proximity sensors and far-infrared thermal sensor arrays. In the proposed solution, the IR sensors operate independently from the BLE subsystem. Their output (the distance to the localized person and the angle between the sensor axis and the person's location) is periodically used to improve the positioning accuracy. The results from both parts of the system are fused using a particle-filter-based algorithm. The proposed concept was tested experimentally. The initial tests established that both the proximity (VL53L5CX) and array (MLX90640) sensors allowed for angle estimations with a mean accuracy of about a few degrees. Using them in the proposed hybrid localization scheme resulted in a mean positioning error decrease of several centimeters.

摘要

本文提出了一种混合定位方案的概念,该方案利用基于低功耗蓝牙(BLE)系统的结果以及额外的红外(IR)设备:接近传感器和远红外热传感器阵列。在所提出的解决方案中,红外传感器独立于BLE子系统运行。其输出(到被定位人员的距离以及传感器轴与人员位置之间的角度)会定期用于提高定位精度。系统两部分的结果使用基于粒子滤波器的算法进行融合。所提出的概念通过实验进行了测试。初步测试表明,接近传感器(VL53L5CX)和阵列传感器(MLX90640)都能够进行角度估计,平均精度约为几度。在提出的混合定位方案中使用它们,平均定位误差降低了几厘米。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/95cf/11860034/63dea143d606/sensors-25-01151-g001.jpg

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