用于物联网应用的深度相机和电磁场定位系统:高水平,轻量级数据融合

Pooneh Mohaghegh, Rabia Saeed, F. Tièche, A. Boegli, Y. Perriard
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引用次数: 3

摘要

本文演示了使用由电磁定位系统和深度相机组成的混合系统进行人员定位,以授权访问控制。该系统的最终目的是通过跟踪射频设备和人来区分在指定区域内移动的人。重点介绍了从这两个系统接收到的数据的应用和整合。两个系统同时发送数据,这些数据存储在Docker容器中以供进一步分析。数据被实时处理以跟踪目标的运动。集中的数据库监视授予对信息的安全访问。使用这种混合系统的动机在于对室内和复杂环境精确定位的需求日益增长。跟踪和跟踪在访问控制应用中尤为重要。该系统对商场、商店、火车站以及一般任何需要监控门禁的场所的门禁应用都有很大的影响。非阻塞特性加上准确性,为用户提供了易用性。此外,采用低频标签系统不会受到室内应用中不可避免的多径效应和非视线问题的影响。通过将用户数量扩展到更大的区域,该系统可以取代传统的安检门,外观美观,使用舒适。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Depth Camera and Electromagnetic Field Localization System For IoT Application: High level, lightweight data fusion
This article demonstrates person localization using a hybrid system consisting of an electromagnetic positioning system and a depth camera to authorize access control. The ultimate aim of this system is to distinguish moving people in a defined area by tracking the RF device and the people. It focuses on the application and incorporation of the received data from these two systems. Both systems send data simultaneously which is stored in a Docker container for further analysis. The data is processed in real-time to track the movement of the targets. The centralized database monitoring grants secure access to the information. The motive for using this hybrid system lies in the ever-growing need for accurate position determination for indoor and complex environments. Track and tracing are especially important in access-control applications. The system has a great impact on real-life access-control applications in malls, shops, train stations, and generally everyplace where the access control requires monitoring. The non-blocking feature plus the accuracy can provide ease of use for the users. Moreover, employing a low-frequency tag system does not suffer from the multipath effect and non-line of sight problems that are inevitable for indoor applications. By extending the number of users for a larger area, this system can replace traditional security gates with a pleasant look and comfortable application.
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