Javascript must be enabled to continue!
Intelligent energy aware optimization protocol for vehicular adhoc networks
View through CrossRef
AbstractVehicular adhoc network (VANET) plays a vital role in smart transportation. VANET includes a set of vehicles that communicate with one another via wireless links. The vehicular communication in VANET necessitates an intelligent clustering protocol to maximize energy efficiency. Since energy acts as an essential factor in the design of VANET, energy-aware clustering protocols depending upon metaheuristic optimization algorithms are required to be developed. This study introduces an intelligent energy-aware oppositional chaos game optimization-based clustering (IEAOCGO-C) protocol for VANET. The presented IEAOCGO-C technique aims to select cluster heads (CHs) in the network proficiently. The proposed IEAOCGO-C model constructs clusters based on oppositional-based learning (OBL) with the chaos game optimization (CGO) algorithm to improve efficiency. Besides, it computes a fitness function involving five parameters, namely throughput (THRPT), packet delivery ratio (PDR), network lifetime (NLT), end to end delay (ETED) and energy consumption (ECM). The experimental validation of the proposed model is accomplished, and the outcomes are studied in numerous aspects with existing models under several vehicles and measures. The simulation outcomes reported the enhanced performance of the proposed approach over the recent technologies. As a result, it has resulted in maximal NLT (4480), minimal ECM (65.6), maximal THRPT (81.6), maximal PDR (84.5), and minimal ETED (6.7) as average values over the other methods under all vehicle numbers.
Springer Science and Business Media LLC
Title: Intelligent energy aware optimization protocol for vehicular adhoc networks
Description:
AbstractVehicular adhoc network (VANET) plays a vital role in smart transportation.
VANET includes a set of vehicles that communicate with one another via wireless links.
The vehicular communication in VANET necessitates an intelligent clustering protocol to maximize energy efficiency.
Since energy acts as an essential factor in the design of VANET, energy-aware clustering protocols depending upon metaheuristic optimization algorithms are required to be developed.
This study introduces an intelligent energy-aware oppositional chaos game optimization-based clustering (IEAOCGO-C) protocol for VANET.
The presented IEAOCGO-C technique aims to select cluster heads (CHs) in the network proficiently.
The proposed IEAOCGO-C model constructs clusters based on oppositional-based learning (OBL) with the chaos game optimization (CGO) algorithm to improve efficiency.
Besides, it computes a fitness function involving five parameters, namely throughput (THRPT), packet delivery ratio (PDR), network lifetime (NLT), end to end delay (ETED) and energy consumption (ECM).
The experimental validation of the proposed model is accomplished, and the outcomes are studied in numerous aspects with existing models under several vehicles and measures.
The simulation outcomes reported the enhanced performance of the proposed approach over the recent technologies.
As a result, it has resulted in maximal NLT (4480), minimal ECM (65.
6), maximal THRPT (81.
6), maximal PDR (84.
5), and minimal ETED (6.
7) as average values over the other methods under all vehicle numbers.
Related Results
Intelligent clustering using moth flame optimizer for vehicular ad hoc networks
Intelligent clustering using moth flame optimizer for vehicular ad hoc networks
Vehicular ad hoc networks consist of access points for communication, transmission, and collecting information of nodes and environment for managing traffic loads. Clustering can b...
An AI Fuzzy Clustering based Routing Protocol for Vehicular Image Recognition in Vehicular Adhoc IoT Networks
An AI Fuzzy Clustering based Routing Protocol for Vehicular Image Recognition in Vehicular Adhoc IoT Networks
Abstract
A vehicular ad-hoc IoT network (VA-IoT) plays a key role in exchanging the constrained networked vehicle information through IPv6 enabled sensor nodes. It is notew...
Secure Enhanced Reactive Routing Protocol for Manet Using Two Fish Algorithm
Secure Enhanced Reactive Routing Protocol for Manet Using Two Fish Algorithm
In Mobile Adhoc Network (MANET) implementing a secure communication is a critical task due to its nature of wireless, infrastructureless, arbitrary network. Its not organized by an...
Safety Data Dissemination Framework For Vehicular Networks
Safety Data Dissemination Framework For Vehicular Networks
"An effective transportation system is essential to modern societies with transportation having a significant influence on economic growth, social development and the environment. ...
Concept of ADSR for Mobile AdHoc Networks/Wireless Sensor Networks
Concept of ADSR for Mobile AdHoc Networks/Wireless Sensor Networks
Wireless AdHoc and sensor networks are very broadly used in many remote applications. AdHoc networks still have problems in conveying data from one node to other node. This problem...
Optimized interest forwarding in information centric vehicular networks using general secretary problem
Optimized interest forwarding in information centric vehicular networks using general secretary problem
Abstract
Vehicular networks of current era is not limited only to road safety and traffic management. It is been widely accepted as a network for information sharing, socia...
Intelligent Priority-Aware Spectrum Access in 5G Vehicular IoT: A Reinforcement Learning Approach
Intelligent Priority-Aware Spectrum Access in 5G Vehicular IoT: A Reinforcement Learning Approach
Efficient and intelligent spectrum access is crucial for meeting the diverse Quality of Service (QoS) demands of Vehicular Internet of Things (V-IoT) systems in next-generation cel...
Smart and Green Mobility Management for 5G‐enabled Vehicular Networks
Smart and Green Mobility Management for 5G‐enabled Vehicular Networks
SummaryWith the recent demand of sustainable and green smart cities, we are witnessing a growing research initiative toward the development of efficient energy‐aware 5G/Wifi‐6 wire...

