Wang Yun, Zhang Ying, Zhang LingYu
School of Mechanical Engineering of DGUT, Dongguan University Of Technology, Dongguan, GuangDong, China.
School of Art & Design, Hubei University of Automotive Technology, Shiyan, Hubei, China.
PeerJ Comput Sci. 2024 Nov 4;10:e2462. doi: 10.7717/peerj-cs.2462. eCollection 2024.
In recent years, the integration of Radio Frequency Identification (RFID) technology with deep learning has revolutionized the Internet of Things (IoT), leading to significant advancements in object identification, management, and control. Museums, which rely heavily on the meticulous management of collections, require precise and efficient systems to monitor and oversee their valuable assets. Traditional methods for tracking and managing museum collections often fall short in providing real-time updates and ensuring optimal environmental conditions for preservation. These shortcomings place a considerable burden on museum staff, who must manually track, inspect, and maintain extensive collections. This study addresses these challenges by proposing an advanced electronic management system that leverages the synergy between RFID technology and Geographical Information Systems (GIS). By integrating an enhanced LANDMARC algorithm into our geoinformation framework, the system visually represents the real-time location of museum collections on custom electronic maps, significantly improving the accuracy and timeliness of environmental monitoring. Additionally, RFID technology is utilized to continuously identify the real-time location of museum staff, facilitating the evaluation of their inspection tasks. This dual approach not only enhances the operational efficiency of collection management but also supports the development of intelligent, automated systems for museums, advancing the application of RFID technology in item identification and location management.
近年来,射频识别(RFID)技术与深度学习的融合彻底改变了物联网(IoT),在物体识别、管理和控制方面取得了重大进展。博物馆严重依赖藏品的精细管理,需要精确高效的系统来监控和管理其珍贵资产。传统的博物馆藏品跟踪和管理方法在提供实时更新以及确保最佳保存环境条件方面往往存在不足。这些缺点给博物馆工作人员带来了相当大的负担,他们必须手动跟踪、检查和维护大量藏品。本研究通过提出一种先进的电子管理系统来应对这些挑战,该系统利用RFID技术与地理信息系统(GIS)之间的协同作用。通过将增强型LANDMARC算法集成到我们的地理信息框架中,该系统在定制电子地图上直观地显示博物馆藏品的实时位置,显著提高了环境监测的准确性和及时性。此外,利用RFID技术持续识别博物馆工作人员的实时位置,便于评估他们的检查任务。这种双重方法不仅提高了藏品管理的运营效率,还支持了博物馆智能自动化系统的开发,推动了RFID技术在物品识别和位置管理中的应用。