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Integrating Wi-Fi, Li-Fi, and BPL Technologies for a Secure Indoor Communication System
Mostafa Eltokhy1, Ali M El-Rifaie2, Heba Allah Gamal1
1Electronics Technology Department, Faculty of Technology and Education, Helwan University, Cairo 11792, Egypt.
Sensors (Basel, Switzerland)
|January 8, 2025
Summary
This study proposes combining Wi-Fi, Li-Fi, and Broadband over Power Lines (BPL) for secure indoor communication. Integrating these technologies with ESP8266 modules and filters enhances data transmission speed and confidentiality.
Area of Science:
- Electrical Engineering
- Computer Networking
- Information Security
Background:
- Growing demand for integrated wireless and wired communication systems.
- Challenges in ensuring secure and reliable data transmission within indoor environments.
- Need for enhanced operational efficiency in organizations through advanced communication infrastructure.
Purpose of the Study:
- To propose a method for maintaining and expanding communication infrastructure.
- To implement high-speed, high-confidentiality communication technologies.
- To enhance organizational operational efficiency through secure indoor communication.
Main Methods:
- Integration of Wi-Fi, Li-Fi, and Broadband over Power Lines (BPL) technologies.
- Utilization of the ESP8266 module for enhanced security and reduced interference.
- Application of OSE, ABPF, and ASBF filters for interference and attack detection/elimination.
Main Results:
- Demonstration of a combined Wi-Fi, Li-Fi, and BPL system for secure indoor communication.
- Effective reduction of noise and interference through the ESP8266 module and filtering techniques.
- Improved data transmission speeds and enhanced data confidentiality.
Conclusions:
- The integration of Wi-Fi, Li-Fi, and BPL offers a promising solution for secure and efficient indoor communication.
- The proposed system enhances operational efficiency by addressing security and reliability challenges.
- This approach represents a significant step towards achieving integrated and secure indoor communication networks.
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