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Saban Ozdemir

Researcher at Gazi University

Publications -  55
Citations -  1373

Saban Ozdemir is an academic researcher from Gazi University. The author has contributed to research in topics: Inverter & Three-phase. The author has an hindex of 16, co-authored 48 publications receiving 1004 citations. Previous affiliations of Saban Ozdemir include Başkent University & University of Wisconsin–Milwaukee.

Papers
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Lyapunov-Function and Proportional-Resonant-Based Control Strategy for Single-Phase Grid-Connected VSI With LCL Filter

TL;DR: The proposed control strategy exhibits a good performance in achieving the required control objectives such as fast dynamic response, zero steady-state error, global stability, and sinusoidal grid current with low total harmonic distortion (THD).
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Sliding-Mode Control for Single-Phase Grid-Connected $\mbox{LCL}$ -Filtered VSI With Double-Band Hysteresis Scheme

TL;DR: Simulation and experimental results show that the proposed SMC strategy exhibits an excellent performance in achieving the required control objectives such as fast dynamic response, robustness, sinusoidal grid current with low total harmonic distortion, and simplicity in a practical implementation.
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An Extended Lyapunov-Function-Based Control Strategy for Single-Phase UPS Inverters

TL;DR: In this article, an extended Lyapunov-function-based control strategy that assures global asymptotic stability is proposed for single-phase UPS inverters, which eliminates the steady state error without destroying the global stability of the closed-loop system.
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Three-phase three-level grid interactive inverter with fuzzy logic based maximum power point tracking controller

TL;DR: In this paper, a three-phase single stage grid interactive inverter with maximum power point tracking capability is proposed, which consists of three-level neutral point clamped inverter, LCL output filter, line frequency transformer, PI current regulator and fuzzy logic based maximum point tracking algorithm.
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Fuzzy PI controlled inverter for grid interactive renewable energy systems

TL;DR: In this article, a fuzzy-PI controlled grid interactive inverter has been designed and implemented, where the proportional and integral gains of the PI controller are decided and tuned by the fuzzy logic controller (FLC) according to required operation point of the system.