A mostly MATLAB-compatible fuzzylogic toolkit for Octave. A complete function reference is located here: https://lmarkowsky.github.io/fuzzy-logic-toolkit/, and the official Octave documentation is here: https://www.octave.org/support
If the function reference and Octave documentation do not address your questions or if you have comments, contact me at lmarkov@users.sourceforge.net.
A collection of packages providing extra functionality for GNU Octave
Octave Forge is a central location for collaborative development of packages for GNU Octave. The Octave Forge packages expand Octave's core functionality by providing field specific features via Octave's package system. See https://octave.sourceforge.io/packages.php for a list of all available packages.
GNU Octave is a high-level interpreted language, primarily intended for numerical computations. It provides capabilities for the numerical solution of linear and nonlinear problems, and...
Verification via biSimulations of Max-Plus-Linear models
This toolbox is used to generate finite abstractions of autonomous Max-Plus-Linear (MPL) systems over R^n. Abstractions are characterized as finite-state Labeled Transition Systems (LTS). The LTS finite abstractions are shown to either simulate or to bisimulate the original MPL system. LTS models are to be verified against given specifications expressed as formulae in Linear Temporal Logic (LTL) and Computation Tree Logic (CTL).
Nature Inspired Toolbox is a software tool meant to solve optimization problems developed in MATLAB environment. Presently, this release is only based on various PSO algorithms and comming versions will include ACO, GAs, BBO.
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A tool based on the model proposed by Bellman & Zadeh (1970) fuzzy logic (fuzzy sets) decision support paper. The first version of the application was developed in Java (pure java + jgoodies and some other APIs).
Now it is being rewritten using nebular, a pure Java fuzzy API.