FASTENER Feature Selection for Inference from Earth Observation Data

Author:

Koprivec FilipORCID,Kenda KlemenORCID,Šircelj BenoORCID

Abstract

In this paper, a novel feature selection algorithm for inference from high-dimensional data (FASTENER) is presented. With its multi-objective approach, the algorithm tries to maximize the accuracy of a machine learning algorithm with as few features as possible. The algorithm exploits entropy-based measures, such as mutual information in the crossover phase of the iterative genetic approach. FASTENER converges to a (near) optimal subset of features faster than other multi-objective wrapper methods, such as POSS, DT-forward and FS-SDS, and achieves better classification accuracy than similarity and information theory-based methods currently utilized in earth observation scenarios. The approach was primarily evaluated using the earth observation data set for land-cover classification from ESA’s Sentinel-2 mission, the digital elevation model and the ground truth data of the Land Parcel Identification System from Slovenia. For land cover classification, the algorithm gives state-of-the-art results. Additionally, FASTENER was tested on open feature selection data sets and compared to the state-of-the-art methods. With fewer model evaluations, the algorithm yields comparable results to DT-forward and is superior to FS-SDS. FASTENER can be used in any supervised machine learning scenario.

Publisher

MDPI AG

Subject

General Physics and Astronomy

Reference34 articles.

1. Mission Status Report 158https://sentinel.esa.int/documents/247904/4114743/Sentinel-2-Mission-Status-Report-158-25-Jan-3-Apr-2020.pdf

2. Streaming Data Fusion for the Internet of Things

3. Multi-Objective Optimization Using Evolutionary Algorithms;Deb,2001

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