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EQARO-ECS: Efficient Quantum ARO-Based Edge Computing and SDN Routing Protocol for IoT Communication to Avoid
Thair A Al-Janabi1, Hamed S Al-Raweshidy2, Muthana Zouri3
1College of Electrical and Electronic Technical Engineering, Middle Technical University, Baghdad 10047, Iraq.
This study introduces an efficient quantum artificial rabbit optimization (ARO) routing protocol for Internet of Things (IoT) networks to combat desertification. The EQARO-ECS method reduces energy use and enhances data analysis for better land monitoring.
Area of Science:
- Environmental Science
- Computer Science
- Artificial Intelligence
Background:
- Desertification, driven by factors like temperature and humidity, degrades fertile land.
- Internet of Things (IoT) architectures and AI-driven routing are crucial for desertification monitoring.
- Classical AI algorithms face challenges with local optima and high energy consumption.
Purpose of the Study:
- To propose an improved multi-objective routing protocol for IoT networks to monitor and prevent desertification.
- To enhance energy efficiency and data analysis speed in IoT networks for environmental monitoring.
- To address the limitations of traditional AI algorithms in desertification management.
Main Methods:
- Developed the efficient quantum (EQ) artificial rabbit optimisation (ARO) based on edge computing (EC) and software-defined networking (SDN) (EQARO-ECS).
- Integrated cloud, SDN, EC, and quantum-enhanced ARO for optimized IoT network routing.
- Utilized iterated quantum gates within ARO for faster convergence to global optimum and an objective function considering energy, communication cost, and desertification parameters.
Main Results:
- The EQARO-ECS protocol significantly reduces energy consumption in IoT networks.
- Data analysis speed is markedly improved due to the quantum-enhanced ARO.
- The protocol demonstrates increased accuracy and extended network lifetime compared to existing algorithms.
Conclusions:
- The EQARO-ECS protocol offers an effective solution for monitoring and combating desertification using advanced IoT and AI.
- This approach enhances the efficiency and longevity of IoT networks for environmental applications.
- The integration of edge computing, SDN, and quantum-inspired optimization provides a robust framework for sustainable land management.
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