Enhanced clustering based routing protocol in vehicular ad‐hoc networks

Author:

Naeem Afia1,Rizwan Muhammad2,Alsubai Shtwai3,Almadhor Ahmad4,Akhtaruzzaman Md.5ORCID,Islam Shayla6,Rahman Hameedur7

Affiliation:

1. Department of Computer Science Kinnaird College for Women University Lahore Pakistan

2. Secure Cyber Systems Research Group WMG, University of Warwick Coventry UK

3. College of Computer Engineering and Sciences Prince Sattam Bin Abdulaziz University AlKharj Saudi Arabia

4. Department of Computer Engineering and Networks College of Computer and Information Sciences Jouf University Sakaka Saudi Arabia

5. Asian University of Bangladesh Dhaka Bangladesh

6. UCSI University Malaysia Federal Territory of Kuala Lumpur Malaysia

7. Department of Computer Games Development Faculty of Computing and AI Air University Islamabad Pakistan

Abstract

AbstractA vehicular ad‐hoc network (VANET) is derived from a mobile ad‐hoc network that is a part of less infrastructure network design. Vehicular communication in VANET can be achieved using vehicle‐to‐infrastructure (V2I) and vehicle‐to‐vehicle (V2V) communication. A vehicle communicates with other vehicles through onboard units while communicating with roadside units in an infrastructure mode. Secure clustering is required for the communication between nodes in the whole network. The fundamental problem with the VANET is the instability of the network that occurs due to vehicles' mobile nature, which decreases the network's efficiency. This research proposes an enhanced cluster‐based lifetime protocol ECBLTR that focuses on maximising the network's stability of routing and average throughput. The Sugeno model fuzzy inference system is used for assessing the cluster head (CH) that takes residual energy, local distance, node degree, concentration, and distance from the base station as input parameters. Our enhanced routing protocol shows that the proper channel model with an efficient routing protocol enhances the link throughput of the VANET for fixed network size. Our results show an efficient selection method of CH through the fuzzy system and a 10% increase in network lifetime. Furthermore, performance evaluation also demonstrates the impact of network sizes and routing protocols on packet delivery ratio and packet loss, average end‐to‐end delay, and overhead transmission.

Publisher

Institution of Engineering and Technology (IET)

Subject

Electrical and Electronic Engineering

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