English

Three Perspectives on Complexity $-$ Entropy, Compression, Subsymmetry

Data Analysis, Statistics and Probability 2018-01-17 v1 Neurons and Cognition

Abstract

There is no single universally accepted definition of "Complexity". There are several perspectives on complexity and what constitutes complex behaviour or complex systems, as opposed to regular, predictable behaviour and simple systems. In this paper, we explore the following perspectives on complexity: "effort-to-describe" (Shannon entropy HH, Lempel-Ziv complexity LZLZ), "effort-to-compress" (ETCETC complexity) and "degree-of-order" (Subsymmetry or SubSymSubSym). While Shannon entropy and LZLZ are very popular and widely used, ETCETC is a recently proposed measure for time series. In this paper, we also propose a novel normalized measure SubSymSubSym based on the existing idea of counting the number of subsymmetries or palindromes within a sequence. We compare the performance of these complexity measures on the following tasks: a) characterizing complexity of short binary sequences of lengths 4 to 16, b) distinguishing periodic and chaotic time series from 1D logistic map and 2D H\'{e}non map, and c) distinguishing between tonic and irregular spiking patterns generated from the "Adaptive exponential integrate-and-fire" neuron model. Our study reveals that each perspective has its own advantages and uniqueness while also having an overlap with each other.

Keywords

Cite

@article{arxiv.1611.00607,
  title  = {Three Perspectives on Complexity $-$ Entropy, Compression, Subsymmetry},
  author = {Nithin Nagaraj and Karthi Balasubramanian},
  journal= {arXiv preprint arXiv:1611.00607},
  year   = {2018}
}

Comments

12 pages, 7 figures, under review (EPJ-ST special issue on "New perspectives on complex systems")

R2 v1 2026-06-22T16:39:44.855Z