International Journal For Multidisciplinary Research
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Volume 8 Issue 3
May-June 2026
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WI-FI DE-AUTHENTICATION TOOL
| Author(s) | Ms. Kavya s, Ms. DEEKSHITHA R, Ms. HAFSA NOORAIN, Mr. HASAN RAZA, Mr. SHIVSHANKAR AWATE |
|---|---|
| Country | India |
| Abstract | This project introduces a web-based educational cybersecurity platform that will safely simulate and analyze Wi-Fi de-authentication attacks within a fully controlled and ethical environment. Unlike conventional penetration testing tools, the system does not generate real packets or interfere with live networks; instead, it offers animated visualizations and interactive modules to clearly show how de-authentication attacks work, allowing learners to understand wireless security vulnerabilities without having any actual impact in the real world. The platform has been developed using a modern technology stack that includes a React TypeScript frontend, an Express.js backend, and a PostgreSQL database to cater for secure data handling, responsive performance, and scalable system architecture. Real-time features such as dynamic event rendering, interactive dashboards, and integrated cybersecurity news feeds further enhance user engagement by coupling learning content with current industry trends. Further supportive tools are embedded in the platform, including password strength evaluators, mock network monitoring panels, and analytics with a focus on the importance of strong credentials and proactive defense. Extensive learning resources on theoretical concepts, legal frameworks, ethical guidelines, and best practices ensure responsible cybersecurity behavior and that all simulations are strictly educational. Combining realistic visualizations, practical tools, and robust ethical safeguards, the system enables students, educators, and professionals to explore wireless network security concepts through an immersive, interactive, and risk-free learning experience that fosters both technical understanding and responsible digital citizenship. |
| Keywords | Wi-Fi De-authentication Simulation, Cybersecurity Education, Web-based Learning Platform, Wireless Network Security. |
| Field | Engineering |
| Published In | Volume 7, Issue 6, November-December 2025 |
| Published On | 2025-12-06 |
| DOI | https://doi.org/10.36948/ijfmr.2025.v07i06.62474 |
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E-ISSN 2582-2160
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