Learning and Convergence of Fuzzy Cognitive Maps Used in Pattern Recognition

被引:33
作者
Napoles, Gonzalo [1 ,2 ]
Papageorgiou, Elpiniki [1 ,3 ]
Bello, Rafael [2 ]
Vanhoof, Koen [1 ]
机构
[1] Hasselt Univ, Fac Business Econ, Hasselt, Belgium
[2] Cent Univ Las Villas, Dept Comp Sci, Santa Clara, Cuba
[3] Technol Educ Inst Cent Greece, Dept Comp Engn, Lamia, Greece
关键词
Fuzzy cognitive maps; Learning algorithm; Convergence; ADAPTIVE ESTIMATION; STABILITY;
D O I
10.1007/s11063-016-9534-x
中图分类号
TP18 [人工智能理论];
学科分类号
081104 ; 0812 ; 0835 ; 1405 ;
摘要
In recent years fuzzy cognitive maps (FCM) have become an active research field due to their capability for modeling complex systems. These recurrent neural models propagate an activation vector over the causal network until the map converges to a fixed-point or a maximal number of cycles is reached. The first scenario suggests that the FCM converged, whereas the second one implies that cyclic or chaotic patterns may be produced. The non-stable configurations are mostly related with the weight matrix that defines the causal relations among concepts. Such weights could be provided by experts or automatically computed from historical data by using a learning algorithm. Nevertheless, from the best of our knowledge, population-based algorithms for FCM-based systems do not include the map convergence into their learning scheme and thus, non-stable configurations could be produced. In this research we introduce a population-based learning algorithm with convergence features for FCM-based systems used in pattern classification. This proposal is based on a heuristic procedure, called Stability based on Sigmoid Functions, which allows improving the convergence of sigmoid FCM used in pattern classification. Numerical simulations using six FCM-based classifiers have shown that the proposed learning algorithm is capable of computing accurate parameters with improved convergence features.
引用
收藏
页码:431 / 444
页数:14
相关论文
共 29 条
[21]   Two-steps learning of Fuzzy Cognitive Maps for prediction and knowledge discovery on the HIV-1 drug resistance [J].
Napoles, Gonzalo ;
Grau, Isel ;
Bello, Rafael ;
Grau, Ricardo .
EXPERT SYSTEMS WITH APPLICATIONS, 2014, 41 (03) :821-830
[22]   A Review of Fuzzy Cognitive Maps Research During the Last Decade [J].
Papageorgiou, Elpiniki I. ;
Salmeron, Jose L. .
IEEE TRANSACTIONS ON FUZZY SYSTEMS, 2013, 21 (01) :66-79
[23]   Learning Algorithms for Fuzzy Cognitive Maps-A Review Study [J].
Papageorgiou, Elpiniki I. .
IEEE TRANSACTIONS ON SYSTEMS MAN AND CYBERNETICS PART C-APPLICATIONS AND REVIEWS, 2012, 42 (02) :150-163
[24]   Towards Hebbian learning of Fuzzy Cognitive Maps in pattern classification problems [J].
Papakostas, G. A. ;
Koulouriotis, D. E. ;
Polydoros, A. S. ;
Tourassis, V. D. .
EXPERT SYSTEMS WITH APPLICATIONS, 2012, 39 (12) :10620-10629
[25]   Human immunodeficiency virus reverse transcriptase and protease sequence database [J].
Rhee, SY ;
Gonzales, MJ ;
Kantor, R ;
Betts, BJ ;
Ravela, J ;
Shafer, RW .
NUCLEIC ACIDS RESEARCH, 2003, 31 (01) :298-303
[26]   The AIC criterion and symmetrizing the Kullback-Leibler divergence [J].
Seghouane, Abd-Krim ;
Amari, Shun-Ichi .
IEEE TRANSACTIONS ON NEURAL NETWORKS, 2007, 18 (01) :97-106
[27]   An experimental study of the dynamics of the certainty neuron fuzzy cognitive maps [J].
Tsadiras, AK ;
Margaritis, KG .
NEUROCOMPUTING, 1999, 24 (1-3) :95-116
[28]   Comparing the inference capabilities of binary, trivalent and sigmoid fuzzy cognitive maps [J].
Tsadiras, Athanasios K. .
INFORMATION SCIENCES, 2008, 178 (20) :3880-3894
[29]  
WILCOXON F, 1946, J ECON ENTOMOL, V39, P269, DOI 10.1093/jee/39.2.269