Measuring progress in literature
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Updated
Nov 25, 2020 - TeX
Measuring progress in literature
Matlab library to visualize the avalanche and power law characteristics of the Bak-Tang-Wiesenfeld sandpile model
Implementation of a minimal neural network model for the study of self-organized criticality
A different take on the sandpile model
Which dynamical regime is beneficial for biological systems in the context of the criticality hypothesis? Agent-based evolutionary foraging game with experiments to evaluate generalizability, ability to perform complex tasks and evolvability of agents with respect to their dynamical regime. Paper: https://arxiv.org/abs/2103.12184
All the code used in the simulations for my masters thesis.
DEVELOPMENT OF A SOFTWARE TOOLKIT FOR INVESTIGATION AND MANAGEMENT OF EPIDEMICS IN SELF_ORGANIZING SYSTEMS
Paper: https://doi.org/10.1162/isal_a_00412 Which dynamical regime is beneficial for biological systems? Agent-based evolutionary foraging game with experiments to evaluate generalizability, ability to perform complex tasks and evolvability.
Forest Fire Simulation Project for the Completion of PH4505 Computational Physics - NTU Singapore Spring 2018
Various studies show that criticality is an attractor in biological evolution. Which conditions have to be fulfilled, such that criticality acts as an attractor in our neuroevolution simulation? -- Masters Thesis Project ---
Code used in paper titled "PLDR-LLMs Reason at Self-Organized Criticality"
Optimised Python forest-fire simulation exploring self-organised criticality, oscillatory dynamics, scaling laws and heavy-tailed fire-size distributions.
Moteur de régulation éthique computationnelle. Remplace les "garde-fous" statiques par une homéostasie dynamique (EHE) basée sur la minimisation de l'entropie sociale ($\Delta S$) et la criticalité auto-organisée.
Research Lab: Why do clusters fail - Multi-agent analysis of cascade dynamics, resource exhaustion, and network partition failure patterns
Toy model for exploring complex system properties in a slow driven disordered medium following threshold dynamics and stress redistribution schemes. The tool can be used to explore phase transitions, fractal and multifractal properties, as well as self-organized criticality.
Paper replications and original analysis in magnetospheric physics: Consolini (2002) SOC replication, Bruno & Carbone (2013) turbulence replication, five-system cross-comparison
Simulation of sandpile dynamics via a cellular automaton and corresponding analysis to extract scaling exponents from avalanche statistics
Criticality analysis on complex networks using Power-law scaling functions, exponential relations, and phase transitions
Trabajo de Fin de Grado de Física en el que se estudia los fenómenos de autoorganización crítica. Se hace un breve estudio de distintas simulaciones como la de la pila de arena BTW y el de incendio forestal. Y se estudiará más en detalle la dinámica de OFC
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