Intelligent Water Drops Algorithm-Based Aggregation in Heterogeneous Wireless Sensor Network

Author:

Nonita S.1ORCID,Xalikovich Pardayev Abdunabi2ORCID,Kumar C. Ramesh3ORCID,Rakhra Manik4ORCID,Samori Issah Abubakari5ORCID,Maquera Yuselino Maquera6ORCID,Gonzáles José Luis Arias7ORCID

Affiliation:

1. Department of Information Technology, Indira Gandhi Delhi Technical University for Women Delhi, India

2. Department of Scientific Research, Innovation and Training of Scientific and Pedagogical Personnel, Tashkent Institute of Finance, Tashkent, Uzbekistan

3. School of Computing Science and Engineering, Galgotias University, Greater Noida, Uttar Pradesh, India

4. Department of Computer Science and Engineering, Lovely Professional University, Phagwara, Punjab 144411, India

5. School of Engineering Sciences, University of Ghana, Ghana

6. Universidad Nacional del Altiplano Puno, Puno, Peru

7. Pontificia Universidad Católica del Peru, Peru

Abstract

This paper provides a novel implementation of the intelligent water drops (IWD) method for resolving data aggregation issues in heterogeneous wireless sensor networks (WSN). When the aggregating node is utilized to transmit the data to the base station, the research attempts to show that the traffic situations of WSN may be modified appropriately by parameter tuning and algorithm modification. IWD is used to generate an optimum data aggregation tree in WSN as one of its applications. IWD assumes that all nodes in the environment are identical, resulting in identical parameter updates for all nodes. In practical scenarios, however, diverse nodes with variable beginning energy, communication range, and sensing range characteristics are deployed. In order to replicate the influence of heterogeneity in the environment, improved IID (IIWD) is offered as an enhancement to the original IID. The suggested enhancement is appropriate for scenarios in which the aggregation node is utilized to transmit data to the base station in heterogeneous configurations. In terms of residual energy, dead nodes, payload, and network lifespan, a series of simulation results demonstrates that the proposed IIWD significantly improves the accuracy and effectiveness of the IWD method in comparison.

Publisher

Hindawi Limited

Subject

Electrical and Electronic Engineering,Instrumentation,Control and Systems Engineering

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