Yerlikaya Özkurt, Fatma

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Yerlikaya-Özkurt,F.
F., Yerlikaya Ozkurt
Y.,Fatma
Y., Fatma
Yerlikaya Özkurt,F.
Fatma Yerlikaya Özkurt
Yerlikaya Ozkurt,Fatma
Yerlikaya Ozkurt,F.
F., Yerlikaya Özkurt
Yerlikaya Ozkurt, Fatma
Fatma, Yerlikaya Özkurt
F.,Yerlikaya Özkurt
Y.Ö.Fatma
F.,Yerlikaya Ozkurt
Fatma, Yerlikaya Ozkurt
Y. Ö. Fatma
Y. O. Fatma
Yerlikaya Özkurt, Fatma
Yerlikaya-Ozkurt, Fatma
Yerlikaya-Ozkurt, Fatma
Yerlikaya-oezkurt, Fatma
Yerlikaya-Ozkurt,F.
Özkurt, Fatma Yerlikaya
Ozkurt, F. Yerlikaya
Job Title
Doktor Öğretim Üyesi
Email Address
fatma.yerlikaya@atilim.edu.tr
Main Affiliation
Industrial Engineering
Status
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Scopus Author ID
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WoS Researcher ID

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11

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This researcher does not have a Scopus ID.
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Scholarly Output

18

Articles

14

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109/541

Supervised MSc Theses

2

Supervised PhD Theses

0

WoS Citation Count

64

Scopus Citation Count

67

WoS h-index

5

Scopus h-index

5

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3

WoS Citations per Publication

3.56

Scopus Citations per Publication

3.72

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10

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2

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Natural Hazards2
Journal of Applied Statistics2
Journal of Industrial and Management Optimization2
Journal of Dynamics and Games1
Journal of Statistics and Management Systems1
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  • Article
    Citation - WoS: 1
    Citation - Scopus: 1
    Spline Based Sparseness and Smoothness for Partially Nonlinear Model Via C-Fused Lasso
    (American Institute of Mathematical Sciences, 2025) Taylan, P.; Yerlikaya-¨Ozkurt, F.; Tez, M.
    One of the most beneficial and widely used models for data analysis are partially nonlinear models (PNLRM), which consists of parametric and nonparametric components. Since the model includes the coefficients of both the parametric and nonparametric parts, the complexity of the model will be high and its interpretation will be very difficult. In this study, we propose a procedure that not only achieves sparseness, but also smoothness for PNLRM to obtain a simpler model that better explains the relationship between the response and covariates. Thus, the fused Lasso problem is taken into account where nonparametric components are expressed as a spline basis function, and then the Fused Lasso estimation problem is built and expressed in terms of conic quadratic programming. Applications are conducted to evaluate the performance of the proposed method by considering commonly utilized measures. Promising results are obtained, especially in the data with nonlinearly correlated variables. © (2025), (American Institute of Mathematical Sciences). All rights reserved.