Enhanced Security and Efficiency in Attendance Management: A Novel RFID and Arduino Integrated System

Debashon Chakraborty, Md. Maruf Rahman, Zihad Hasan Joy, Md. Ashikul Islam, Abu Shufian, Protik Parvez Sheikh, S. Alam
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Abstract

The advent of Radio Frequency Identification (RFID) technology has ushered in a new paradigm in the domain of automated attendance systems, offering a sophisticated yet user-friendly approach to personnel management. This paper presents a comprehensive study on the design and deployment of an RFID-based attendance system powered by the versatile Arduino platform, elucidating its operational tenets, system architecture, and practical implementations. At the heart of the system lies the MFRC522 RFID reader, which synergizes with an Arduino microcontroller to facilitate the identification and logging of attendance data. The system is enhanced by the inclusion of an SD Card Module for data storage and a Real-Time Clock (RTC) Module to ensure accurate timestamping of attendance events. The seamless integration of these components results in a robust mechanism that not only simplifies the attendance tracking process but also fortifies the security framework by leveraging unique identifiers for each user. The study spans the detailed process of assembling the hardware, crafting the software in the Arduino Integrated Development Environment (IDE), and meticulously testing the integrated system to affirm its efficacy. The resulting attendance system embodies a significant stride towards refining attendance management practices, eliminating the shortcomings of manual tracking while providing a scalable and reliable solution adaptable to various organizational settings.
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提高考勤管理的安全性和效率:新型 RFID 和 Arduino 集成系统
射频识别(RFID)技术的出现为自动考勤系统领域带来了一种新的模式,为人事管理提供了一种复杂而又便于使用的方法。本文全面研究了基于射频识别(RFID)技术的考勤系统的设计和部署,该系统由多功能 Arduino 平台驱动,阐明了其操作原理、系统架构和实际实施。该系统的核心是 MFRC522 RFID 阅读器,它与 Arduino 微控制器协同工作,便于识别和记录考勤数据。该系统还配备了 SD 卡模块(用于存储数据)和实时时钟(RTC)模块,以确保对考勤事件进行准确的时间标记。这些组件的无缝整合形成了一个强大的机制,不仅简化了考勤跟踪流程,还利用每个用户的唯一标识符加强了安全框架。这项研究涵盖了组装硬件、在 Arduino 集成开发环境(IDE)中制作软件以及对集成系统进行细致测试以确认其有效性的详细过程。由此产生的考勤系统在完善考勤管理实践方面迈出了一大步,消除了人工跟踪的缺点,同时提供了一个可扩展且可靠的解决方案,适用于各种组织环境。
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