Enhanced IoT Network Longevity using Adaptive Data-Rate Communication and Virtual Energy Balancing
1 Gulupalli Yasaswi
UG Student
Department of ECE
GMR Institute of Technology (GMRIT) – Deemed to be University
Rajam, Andhra Pradesh, India
22341A0463@gmrit.edu.in
2 Bonela Mounika
UG Student
Department of ECE
GMR Institute of Technology (GMRIT) – Deemed to be University
Rajam, Andhra Pradesh, India
22341A0432@gmrit.edu.in
3 Thota Pavithra
UG Student
Department of ECE
GMR Institute of Technology (GMRIT) – Deemed to be University
Rajam, Andhra Pradesh, India
22341A04H6@gmrit.edu.in
4 Dunna Praveen
UG Student
Department of ECE
GMR Institute of Technology (GMRIT) – Deemed to be University
Rajam, Andhra Pradesh, India
22341A0451@gmrit.edu.in
*5 P Kalyan Chakravarthi
Assistant Professor
Department of ECE
GMR Institute of Technology (GMRIT) – Deemed to be University
Rajam, Andhra Pradesh, India
Kalyanchakravarthi.p@gmrit.edu.in
Abstract— Adaptive Data Rate Transmission Protocol designed to improve the performance and efficiency of wireless communication systems. In traditional communication methods, fixed transmission protocols often lead to problems such as high energy consumption, increased delay, packet collisions, and reduced network lifetime. To overcome these issues, the proposed system combines three different transmission protocols into a single adaptive framework that can intelligently select the most suitable protocol based on current network conditions. The system continuously monitors important parameters such as energy, bandwidth, latency, data rate, and transmission accuracy to make smart decisions for reliable communication between devices. By adapting to changing conditions, the protocol reduces packet loss, minimizes delay, improves bandwidth utilization, and increases overall transmission efficiency. In addition, efficient energy management helps to extend the network lifetime and maintain stable performance. MATLAB simulation results and graphical analysis demonstrate that the proposed adaptive approach performs better than existing methods, providing more reliable, efficient, and accurate data transmission in a practical and user-friendly manner.
Keywords:
Adaptive Data Rate, Hybrid Transmission Protocol, Network Lifetime Improvement, Energy Efficient Communication, Reliable Data Transmission.