TY - JOUR
T1 - A Type-1 Fuzzy Fusion Model based on the Dempster-Shafer Theory for the simulation of 3D Fused Deposition
AU - AlAlaween, Wafa’ H.
AU - AlAlawin, Abdallah H.
AU - Gharaibeh, Belal M.Y.
AU - Mahfouf, Mahdi
AU - Alsoussi, Ahmad
AU - AbuHamour, Saif O.
AU - AbuKaraky, Ashraf E.
N1 - Publisher Copyright:
© The Author(s) 2025
PY - 2025/11
Y1 - 2025/11
N2 - In this research, a novel fusion model which incorporates a type-1 fuzzy logic system (T1FLS) and the Dempster-Shafer theory (DST) is proposed to model the 3D fused deposition process. First, the experimental data, which are constructed based on the Taguchi L18 array for two filaments (i.e., Polyether-ether-ketone and Polyether-ketone-ketone), are used to develop T1FLSs that have different structures. Second, a fusion algorithm integrating fuzzy logic and the DST is presented to integrate the predicted values of the T1FLSs after analysing the behaviours of such systems in the space examined. The proposed model can integrate such systems in a way that can resolve possible conflicts among the models developed in the first stage and, as a result, it can improve the predictive performance. Validated on a set of experimental data, the proposed fusion model has improved the predictive performance with an average improvement of 25.6%. The fusion model developed is employed to anticipate the mechanical characteristics of a dental part produced by fused deposition.
AB - In this research, a novel fusion model which incorporates a type-1 fuzzy logic system (T1FLS) and the Dempster-Shafer theory (DST) is proposed to model the 3D fused deposition process. First, the experimental data, which are constructed based on the Taguchi L18 array for two filaments (i.e., Polyether-ether-ketone and Polyether-ketone-ketone), are used to develop T1FLSs that have different structures. Second, a fusion algorithm integrating fuzzy logic and the DST is presented to integrate the predicted values of the T1FLSs after analysing the behaviours of such systems in the space examined. The proposed model can integrate such systems in a way that can resolve possible conflicts among the models developed in the first stage and, as a result, it can improve the predictive performance. Validated on a set of experimental data, the proposed fusion model has improved the predictive performance with an average improvement of 25.6%. The fusion model developed is employed to anticipate the mechanical characteristics of a dental part produced by fused deposition.
KW - Dempster-Shafer theory
KW - fusion model
KW - Taguchi L18 orthogonal array
KW - type-1 fuzzy logic system
UR - https://www.scopus.com/pages/publications/105018737277
U2 - 10.1177/18758967251334236
DO - 10.1177/18758967251334236
M3 - Article
AN - SCOPUS:105018737277
SN - 1064-1246
VL - 49
SP - 1160
EP - 1174
JO - Journal of Intelligent and Fuzzy Systems
JF - Journal of Intelligent and Fuzzy Systems
IS - 5
ER -