Deep Ensemble-Based Approach Using Randomized Low-Rank Approximation for Sustainable Groundwater Level Prediction

Author:

Manna Tishya1ORCID,Anitha A.1ORCID

Affiliation:

1. School of Information Technology and Engineering, Vellore Institute of Technology, Vellore 632014, Tamil Nadu, India

Abstract

Groundwater is the most abundant freshwater resource. Agriculture, industrialization, and domestic water supplies rely on it. The depletion of groundwater leads to drought. Topographic elevation, aquifer properties, and geomorphology influence groundwater quality. As the groundwater level data (GWL) are time series in nature, it is challenging to determine appropriate metrics and to evaluate groundwater levels accurately with less information loss. An effort has been made to forecast groundwater levels in India by developing a deep ensemble learning approach using a double-edge bi-directed long-short-term-memory (DEBi-LSTM) model approximated with a randomized low-ranked approximation algorithm (RLRA) and the variance inflation factor (VIF) to reduce information loss and to preserve data consistency. With minimal computation time, the model outperformed existing state-of-the-art models with 96.1% accuracy. To ensure sustainable groundwater development, the proposed work is discussed in terms of its managerial implications. By applying the model, we can identify safe, critical, and semi-critical groundwater levels in Indian states so that strategic plans can be developed.

Funder

School of Information Technology and Engineering, Vellore Institute of Technology

Publisher

MDPI AG

Subject

Fluid Flow and Transfer Processes,Computer Science Applications,Process Chemistry and Technology,General Engineering,Instrumentation,General Materials Science

Reference37 articles.

1. (2022, May 20). Water Scarcity. Available online: https://www.unicef.org/wash/water-scarcity.

2. Space Applications Centre, ISRO (2016). Desertification and Land Degradation Atlas of Selected Districts of India (Based on IRS LISS III data of 2011–13 and 2003–05), Space Applications Centre (ISRO).

3. India’s depleting groundwater: When science meets policy;Chindarkar;Asia Pac. Policy Stud.,2019

4. The Global Land Data Assimilation System;Rodell;Bull. Am. Meteorol. Soc.,2004

5. (2022, May 20). India State Map, List of States in India. Available online: https://www.whereig.com/india/states/.

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