2023Unpublished venueRequires access

EGMPIP: Enhanced Geographic Multipath Routing using Gossip-Based Direct Neighbor Discovery Algorithm in Wireless Sensor Networks

Narayanan Chidambaram Senthilkumar, N. Revathy, T. Guhan

Open publisher page 1 citations

Abstract

Many paths between the source and sink nodes may be detected using multi-path routing in WSNs. The reliability, energy efficiency, and other benefits of data transmission may be increased by using many channels. The topic of multi-path routing has been the subject of several academic studies. These multi-path routing protocols, however, are ineffective because of the time and energy needed to build several channels. The elimination of bottlenecks and delays in data transmission is made possible by multipath routing in WSNs. Network QoS (Quality of Service), load balancing, and communication dependability may all benefit from multipath routing systems. To identify multipath routing in WSN, we suggested the Enhanced Geographic multipath (EGMPIP) architecture. The proposed framework first constructs the base station routing algorithm by computing the Neighbor node discovery (NND) function in the network using the G-ND. Each node in the network may make use of multipath routing thanks to the network-wide routing mechanism. In the end, simulation data are shown to validate the suggested technique, and the findings demonstrate that the routing strategy described in this work is superior to past methods.

About this research paper

What this paper is about

Many paths between the source and sink nodes may be detected using multi-path routing in WSNs. The reliability, energy efficiency, and other benefits of data transmission may be increased by using many channels. The topic of multi-path routing has been the subject of several academic studies. These multi-path routing protocols, however, are ineffective because of the time and energy needed to build several channels. The elimination of bottlenecks and delays in data transmission is made possible by multipath routing in WSNs. Network QoS (Quality of Service), load balancing, and communication dependability may all benefit from multipath routing systems. To identify multipath routing in WSN, we suggested the Enhanced Geographic multipath (EGMPIP) architecture. The proposed framework first constructs the base station routing algorithm by computing the Neighbor node discovery (NND) function in the network using the G-ND. Each node in the network may make use of multipath routing thanks to the network-wide routing mechanism. In the end, simulation data are shown to validate the suggested technique, and the findings demonstrate that the routing strategy described in this work is superior to past methods.

Why it matters

OpenAlex reports 1 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Many paths between the source and sink nodes may be detected using multi-path routing in WSNs. The reliability, energy efficiency, and other benefits of data transmission may be increased by using many channels. The topic of multi-path routing has been the subject of several academic studies. These multi-path routing protocols, however, are ineffective because of the time and energy needed to build several channels. The elimination of bottlenecks and delays in data transmission is made possible by multipath routing in WSNs. Network QoS (Quality of Service), load balancing, and communication dependability may all benefit from multipath routing systems. To identify multipath routing in WSN, we suggested the Enhanced Geographic multipath (EGMPIP) architecture. The proposed framework first constructs the base station routing algorithm by computing the Neighbor node discovery (NND) function in the network using the G-ND. Each node in the network may make use of multipath routing thanks to the network-wide routing mechanism. In the end, simulation data are shown to validate the suggested technique, and the findings demonstrate that the routing strategy described in this work is superior to past methods.

Key concepts: Multipath routing, Computer science, Static routing, Computer network, Dynamic Source Routing, Link-state routing protocol, Policy-based routing, Equal-cost multi-path routing

Related papers

Back to paper searchBrowse research topicsOriginal source
EGMPIP: Enhanced Geographic Multipath Routing using Gossip-Based Direct Neighbor Discovery Algorithm in Wireless Sensor Networks — Research Paper | ScholarLens