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Article

Getting over High-Dimensionality: How Multidimensional Projection Methods Can Assist Data Science

by
Evandro S. Ortigossa
1,†,
Fábio Felix Dias
1,† and
Diego Carvalho do Nascimento
2,*,†
1
Institute of Mathematics and Computer Science, University of São Paulo, São Carlos 13566590, Brazil
2
Departamento de Matemática, Facultad de Ingeniería, Universidad de Atacama, Copiapó 1530000, Chile
*
Author to whom correspondence should be addressed.
These authors contributed equally to this work.
Appl. Sci. 2022, 12(13), 6799; https://doi.org/10.3390/app12136799
Submission received: 26 May 2022 / Revised: 27 June 2022 / Accepted: 27 June 2022 / Published: 5 July 2022
(This article belongs to the Special Issue Data Science, Statistics and Visualization)

Abstract

The exploration and analysis of multidimensional data can be pretty complex tasks, requiring sophisticated tools able to transform large amounts of data bearing multiple parameters into helpful information. Multidimensional projection techniques figure as powerful tools for transforming multidimensional data into visual information according to similarity features. Integrating this class of methods into a framework devoted to data sciences can contribute to generating more expressive means of visual analytics. Although the Principal Component Analysis (PCA) is a well-known method in this context, it is not the only one, and, sometimes, its abilities and limitations are not adequately discussed or taken into consideration by users. Therefore, knowing in-depth multidimensional projection techniques, their strengths, and the possible distortions they can create is of significant importance for researchers developing knowledge-discovery systems. This research presents a comprehensive overview of current state-of-the-art multidimensional projection techniques and shows example codes in Python and R languages, all available on the internet. The survey segment discusses the different types of techniques applied to multidimensional projection tasks from their background, application processes, capabilities, and limitations, opening the internal processes of the methods and demystifying their concepts. We also illustrate two problems, from a genetic experiment (supervised) and text mining (non-supervised), presenting solutions through multidimensional projection application. Finally, we brought elements that reverberate the competitiveness of multidimensional projection techniques towards high-dimension data visualization, commonly needed in data sciences solutions.
Keywords: high-dimensional data; dimensionality reduction; multidimensional scaling; artificial intelligence; information visualization high-dimensional data; dimensionality reduction; multidimensional scaling; artificial intelligence; information visualization

Share and Cite

MDPI and ACS Style

Ortigossa, E.S.; Dias, F.F.; Nascimento, D.C.d. Getting over High-Dimensionality: How Multidimensional Projection Methods Can Assist Data Science. Appl. Sci. 2022, 12, 6799. https://doi.org/10.3390/app12136799

AMA Style

Ortigossa ES, Dias FF, Nascimento DCd. Getting over High-Dimensionality: How Multidimensional Projection Methods Can Assist Data Science. Applied Sciences. 2022; 12(13):6799. https://doi.org/10.3390/app12136799

Chicago/Turabian Style

Ortigossa, Evandro S., Fábio Felix Dias, and Diego Carvalho do Nascimento. 2022. "Getting over High-Dimensionality: How Multidimensional Projection Methods Can Assist Data Science" Applied Sciences 12, no. 13: 6799. https://doi.org/10.3390/app12136799

APA Style

Ortigossa, E. S., Dias, F. F., & Nascimento, D. C. d. (2022). Getting over High-Dimensionality: How Multidimensional Projection Methods Can Assist Data Science. Applied Sciences, 12(13), 6799. https://doi.org/10.3390/app12136799

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