Sünter, Sedat

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Name Variants
S., Sunter
S.,Sünter
S., Sünter
Sunter,Sedat
S.,Sedat
Sedat Sünter
S., Sedat
S.,Sunter
Sünter, Sedat
Sunter S.
Sedat, Sünter
Sedat, Sunter
Sunter,S.
Sünter S.
Sünter,S.
Sunter, Sedat
Job Title
Profesör Doktor
Email Address
sedat.sunter@atilim.edu.tr
Main Affiliation
Electrical-Electronics Engineering
Status
Scopus Author ID
Turkish CoHE Profile ID
Google Scholar ID
WoS Researcher ID

Sustainable Development Goals

14

LIFE BELOW WATER
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0

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2

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11

SUSTAINABLE CITIES AND COMMUNITIES
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1

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12

RESPONSIBLE CONSUMPTION AND PRODUCTION
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7

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2

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5

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3

GOOD HEALTH AND WELL-BEING
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1

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9

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13

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6

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10

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4

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8

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Documents

36

Citations

458

h-index

12

Documents

30

Citations

262

Scholarly Output

3

Articles

2

Views / Downloads

34/0

Supervised MSc Theses

1

Supervised PhD Theses

0

WoS Citation Count

12

Scopus Citation Count

16

WoS h-index

1

Scopus h-index

1

Patents

0

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0

WoS Citations per Publication

4.00

Scopus Citations per Publication

5.33

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0

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1

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  • Article
    Citation - WoS: 12
    Citation - Scopus: 16
    Modeling and Analysis of a Single-Phase Core-Type Transformer Under Inrush Current and Nonlinear Load Conditions
    (Springer, 2021) Altun, Huseyin; Sunter, Sedat; Aydogmus, Omur
    In this paper, a transformer model based on the equivalent electrical circuit considering the nonlinearity of the iron core has been developed. The nonlinear behavior of the iron core was taken into account by using the inverted Jiles-Atherton hysteresis model. The single-phase core-type transformer was analyzed under different energization, remnant flux for inrush current and nonlinear load conditions. Illustrative and remarkable simulation and experimental results related to inrush current along with the primary and secondary currents under nonlinear load conditions were demonstrated. In addition, magnetic flux in the iron core and the hysteresis curve as a consequence of the relation of the magnetic flux and magnetizing inrush current were demonstrated. Operation of the transformer under various nonlinear load conditions have been demonstrated with simulation and experimental results. Variation of peak value of the inrush current for different levels of remnant flux in the iron core and different switching-on angles of the voltage applied to the primary was further indicated.