ArXiv

A RFID Based Campus Wide Payment System

Authors
Miraj Uddin Chowdhury, MD Khairul Islam Prime
Categories
cs.SE, cs.AI
arXiv
https://arxiv.org/abs/2607.17233v1
PDF
https://arxiv.org/pdf/2607.17233v1

Brief

A RFID-based campus payment system describes a prototype that pairs RFID cards and readers with a Raspberry Pi, a centralized real-time database, and a simple web interface. The work focuses on secure, object-oriented system design and hardware integration, reports cost-effectiveness and usability gains, surveys related RFID applications, and proposes extensions like wearables and blockchain. Full paper text was not reviewed (abstract and metadata only).

Why it matters

Proposes a campus-wide cashless payment prototype using RFID cards, RFID readers and a Raspberry Pi tied to a centralized database and a web UI that provides real-time transaction and balance updates; design emphasizes object-oriented principles and hardware–software integration.

Key details

  • Claims the system is cost-effective and enhances convenience and security for services (cafeteria, tuition, library); also surveys related RFID uses (smart parking, attendance) and outlines future features: wearable RFID, voice-activated payments, and blockchain integration.
  • Authored by Miraj Uddin Chowdhury and MD Khairul Islam Prime, posted to arXiv 2026-07-19 (arXiv:2607.17233v1); paper is 5 pages with 5 figures (PDF link provided).
Source evidence

Abstract

This work titled "RFID Based Campuswide Payment System" introduces an innovative cashless payment solution for educational institutions. It uses RFID cards and a Raspberry Pi to enable hassle free payments for various campus services, such as cafeteria purchases, tuition fees, and library fines. A centralized database ensures real-time updates on transactions and account balances, accessible through a simple and user-friendly web interface. This work is involved in designing a secure system with object-oriented principles, setting up databases, and integrating hardware like RFID readers with a Raspberry Pi. The systems are proved to be a cost-effective and efficient alternative to traditional payment methods, enhancing convenience and security for students and administrators. The study also explored similar RFID applications, like smart parking and attendance systems, to identify challenges and improvements. Looking ahead, it envisions features like wearable RFID devices, voice-activated payments, and blockchain integration to boost security and usability. Results show that this system simplifies campus payments and has the potential for broader adoption in similar environments.

Comment: 5 Pages, 5 figures