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Optimizing bandwidth utilization and traffic control in ISP networks for enhanced smart agriculture. | LitMetric

Optimizing bandwidth utilization and traffic control in ISP networks for enhanced smart agriculture.

PLoS One

Department of Electronics and Electrical Communication, Faculty of Electronic Engineering, Menoufia University, Menouf, Egypt.

Published: March 2024

AI Article Synopsis

  • The growing need for high-bandwidth Internet is pushing industries to innovate, with smart agriculture leading the way in utilizing this connectivity.
  • ISPs face challenges in managing bandwidth and traffic, which can be addressed by combining Multi-Protocol Label Switching-Traffic Engineering (MPLS-TE) with Diffserv Quality of Service (Diffserv-QoS).
  • Together, these technologies enhance network efficiency, crucial for supporting real-time data flow in smart agriculture, resulting in higher throughput and lower jitter for improved connectivity.

Article Abstract

As the demand for high-bandwidth Internet connections continues to surge, industries are exploring innovative ways to harness this connectivity, and smart agriculture stands at the forefront of this evolution. In this paper, we delve into the challenges faced by Internet Service Providers (ISPs) in efficiently managing bandwidth and traffic within their networks. We propose a synergy between two pivotal technologies, Multi-Protocol Label Switching-Traffic Engineering (MPLS-TE) and Diffserv Quality of Service (Diffserv-QoS), which have implications beyond traditional networks and resonate strongly with the realm of smart agriculture. The increasing adoption of technology in agriculture relies heavily on real-time data, remote monitoring, and automated processes. This dynamic nature requires robust and reliable high-bandwidth connections to facilitate data flow between sensors, devices, and central management systems. By optimizing bandwidth utilization through MPLS-TE and implementing traffic control mechanisms with Diffserv-QoS, ISPs can create a resilient network foundation for smart agriculture applications. The integration of MPLS-TE and Diffserv-QoS has resulted in significant enhancements in throughput and a considerable reduction in Jitter. Employment of the IPv4 header has demonstrated impressive outcomes, achieving a throughput of 5.83 Mbps and reducing Jitter to 3 msec.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10962847PMC
http://journals.plos.org/plosone/article?id=10.1371/journal.pone.0300650PLOS

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