Distributed ledger technology based robust access control and real-time synchronization for consumer electronics

Author:

Akhtar Mohd Majid1,Khan Mohammad Zubair2,Ahad Mohd Abdul3,Noorwali Abdulfattah4,Rizvi Danish Raza1,Chakraborty Chinmay5

Affiliation:

1. Department of Computer Engineering, Jamia Millia Islamia University, New Delhi, India

2. Department of Computer Science, College of Computer Science and Engineering, Taibah University, Medina, Saudi Arabia

3. Department of Computer Science and Engineering, Jamia Hamdard University, New Delhi, India

4. Electrical Engineering Department, Umm Al-Qura University, Makkah, Saudi Arabia

5. Department of Electronics and Communication Engineering, Birla Institute of Technology, Ranchi, Jharkhand, India

Abstract

Background Consumer electronics or daily use home appliances are the basic necessity of every household. With the adoption of IoT in consumer electronics, this industry is set to rise exponentially. In recent times, the demand for consumer electronics rises amidst the pandemic due to a paradigm shift from in-office culture to work from home. Despite intelligent IoT devices, smart home configuration, and appliances at our disposal, the rudimentary client-server architecture fails to provide facilities like full access control of data and devices, transparency, secured communication, and synchronization between multiple devices, etc. to the users. Methods To overcome these limitations, Blockchain technology has been adopted in recent years, however, it has its own set of limitations in its widespread implementation. Hence, we propose a methodology using the IOTA platform, a distributed ledger technology (DLT) for secured communication between consumer electronics devices and appliances. Results The implementation provides access control, interoperability, data storage, and management with an exploratory insight towards a decentralized micro-payment use-case between Electric cars and charging stations.

Publisher

PeerJ

Subject

General Computer Science

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1. Blockchain-Enabled Decentralized Edge Intelligence for Trustworthy 6G Consumer Electronics;IEEE Transactions on Consumer Electronics;2024-02

2. Efficient and Secure Access Control for IoT-based Environmental Monitoring;Engineering, Technology & Applied Science Research;2023-10-13

3. Bibliometrics Analysis on Mobile Consumer Electronics Technology;2023 IEEE 13th International Conference on Consumer Electronics - Berlin (ICCE-Berlin);2023-09-03

4. Bibliometrics Analysis on Mobile Consumer Electronics Technology;2023 IEEE 13th International Conference on Consumer Electronics - Berlin (ICCE-Berlin);2023-09-03

5. Efficient Vision Transformer for Human-Centric AIoT Applications Through Token Tracking Assignment;IEEE Transactions on Consumer Electronics;2023

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