Result: Advanced analysis of temporal data using Fisher-Shannon information: theoretical development and application in geosciences

Title:
Advanced analysis of temporal data using Fisher-Shannon information: theoretical development and application in geosciences
Source:
Front. Earth Sci. 8:255 (2020)
Publication Year:
2019
Collection:
Statistics
Subject Terms:
Document Type:
Report Working Paper
DOI:
10.3389/feart.2020.00255
Accession Number:
edsarx.1912.02452
Database:
arXiv

Further Information

Complex non-linear time series are ubiquitous in geosciences. Quantifying complexity and non-stationarity of these data is a challenging task, and advanced complexity-based exploratory tool are required for understanding and visualizing such data. This paper discusses the Fisher-Shannon method, from which one can obtain a complexity measure and detect non-stationarity, as an efficient data exploration tool. The state-of-the-art studies related to the Fisher-Shannon measures are collected, and new analytical formulas for positive unimodal skewed distributions are proposed. Case studies on both synthetic and real data illustrate the usefulness of the Fisher-Shannon method, which can find application in different domains including time series discrimination and generation of times series features for clustering, modeling and forecasting. The paper is accompanied with Python and R libraries for the non-parametric estimation of the proposed measures.
Comment: 18 pages, 5 figures