On the Resilience of an Ant-based System in Fuzzy Environments. An Empirical Study

01/19/2014
by   Gloria Cerasela Crisan, et al.
0

The current work describes an empirical study conducted in order to investigate the behavior of an optimization method in a fuzzy environment. MAX-MIN Ant System, an efficient implementation of a heuristic method is used for solving an optimization problem derived from the Traveling Salesman Problem (TSP). Several publicly-available symmetric TSP instances and their fuzzy variants are tested in order to extract some general features. The entry data was adapted by introducing a two-dimensional systematic degree of fuzziness, proportional with the number of nodes, the dimension of the instance and also with the distances between nodes, the scale of the instance. The results show that our proposed method can handle the data uncertainty, showing good resilience and adaptability.

READ FULL TEXT
research
07/31/2019

A comparative study of general fuzzy min-max neural networks for pattern classification problems

General fuzzy min-max (GFMM) neural network is a generalization of fuzzy...
research
09/21/2011

Memristive fuzzy edge detector

Fuzzy inference systems always suffer from the lack of efficient structu...
research
10/10/2011

Memristors can implement fuzzy logic

In our work we propose implementing fuzzy logic using memristors. Min an...
research
01/08/2020

An improved online learning algorithm for general fuzzy min-max neural network

This paper proposes an improved version of the current online learning a...
research
01/21/2022

An empirical study on Java method name suggestion: are we there yet?

A large-scale evaluation for current naming approaches substantiates tha...
research
10/17/2016

Multiple Instance Fuzzy Inference Neural Networks

Fuzzy logic is a powerful tool to model knowledge uncertainty, measureme...
research
03/08/2018

Concise Fuzzy Representation of Big Graphs: a Dimensionality Reduction Approach

The enormous amount of data to be represented using large graphs exceeds...

Please sign up or login with your details

Forgot password? Click here to reset