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Optimizing Network Convergence for Efficient Data Transmission in Server-to-Client Environments: A Comparative Analysis of Dynamic Routing Protocols Using OPNET Simulation

Sharma, Priynka and Mehta, Vinay P. (2024) Optimizing Network Convergence for Efficient Data Transmission in Server-to-Client Environments: A Comparative Analysis of Dynamic Routing Protocols Using OPNET Simulation. In: Optimizing Network Convergence for Efficient Data Transmission in Server-to-Client Environments: A Comparative Analysis of Dynamic Routing Protocols Using OPNET Simulation. Algorithms for Intelligent Systems . Springer Nature, Singapore, pp. 453-468. ISBN 978-981-97-0327-2_33

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Abstract

In today's dynamic and interconnected digital landscape, unified and efficient data transmission in server-to-client environments is the foundation of modern communication. In the operations of financial institutions, the sharing of critical patient information in healthcare facilities, or the worldwide delivery of content by e-commerce platforms, the concrete reliability of data transmission remains a top priority. Therefore, this research explores network convergence optimization, explicitly focusing on server-to-client data transfer scenarios. Using the power of OPNET simulation, we undertake a thorough comparative analysis of dynamic routing protocols to clarify their performance and adaptability within this critical context. We investigate the complex world of dynamic routing protocols, particularly emphasizing widely-used protocols such as EIGRP and OSPF. Our evaluation extends crucial performance metrics: latency, throughput, scalability, and adaptability. By doing so, we offer an invaluable resource for decision-makers through selecting and configuring the routing protocols to sustain network convergence in server-to-client scenarios. As our digitally reliant world continues to expand, the capacity to optimize network convergence becomes not just a preference but a necessity. This study permits network administrators and engineers with the knowledge to make informed choices, eventually enhancing the efficiency and dependability of server-to-client data exchanges in today's evolving technological environment.

Item Type: Book Chapter
Subjects: T Technology > T Technology (General)
Divisions: School of Information Technology, Engineering, Mathematics and Physics (STEMP)
Depositing User: Priynka Sharma
Date Deposited: 08 May 2025 03:25
Last Modified: 08 May 2025 03:25
URI: https://repository.usp.ac.fj/id/eprint/14896

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