top of page

ACADEMIC RESEARCH PUBLICATIONS

  • 2025 | Journal Article Sahin, K., & Cetin, S. "High-Efficiency Four-Coil LCC-C-C-C Compensated Wireless Charging System Operating at 13.56-MHz Frequency for Deep Brain Stimulation." International Journal of Circuit Theory and Applications (Wiley), 2025.
  • 2025 | Conference Paper Sahin, K., & Cetin, S. "A Power Efficient LCC-C Compensated Wireless Charging System for Head Mounted Deep Brain Stimulation." 2025 IEEE Wireless Power Technology Conference and Expo (WPTCE), Rome, Italy.
  • 2023 | Conference Paper (Awarded) Sahin, K., & Cetin, S. "Efficiency Analysis for Deep Brain Stimulation Using an LCC-C WPT System Operating at 13.56 MHz Frequency." 14th International Conference on Electrical and Electronics Engineering (ELECO), Bursa, Turkey. (Awarded: ELECO 2023 Best Student Paper Award in memory of Electr. Eng. Mahmut CURA)
  • 2023 | Journal Article Eski, O., Sahin, K., & Cetin, S. "A Modular Multilevel Converter-Based Pulsed Electric Field Generator Design for Electroporation Applications." Balkan Journal of Electrical and Computer Engineering, 11(4), 373-379, 2023.

ACADEMIC RESEARCH - PAPER AWARD

Ekran Resmi 2026-08-17 15.23.30.png

PROJECTS & ACADEMIC RESEARCH

  • 2024 | Master's Thesis: Efficient Wireless Power Transfer System Design for Deep Brain Stimulation (DBS)
    Engineered a direct cranial implantation WPT system utilizing two and four-coil LCC-C and LCC-C-C-C hybrid topologies to overcome conventional design limitations. Developed a mobile application interface to control battery charging and critical stimulation parameters. Built a functional 4-coil prototype and conducted comprehensive SAR (Specific Absorption Rate) analysis to ensure strict medical safety standards.

  • 2023-2024 | Pamukkale University Scientific Research Project (PAU BAP) / Project Responsible
    “An Efficient Wireless Power Transfer System Design for Deep Brain Stimulation“
    Job Description : Directed the research planning and execution phases of a university-funded scientific research project focusing on cranial wireless power systems.

  • 2022-2023 | Tübitak 1512 Project /Power Electronics Engineer
    “Development of a High Efficiency Wireless Battery Charging System for Automated Guided Vehicles”
    Job Description : Designed and optimized high-efficiency power electronics and charging circuitry for Automated Guided Vehicles (AGVs) in national grant project.

  • 2022 | Teknofest Competition / Avionics & Systems Designer
    “Vertical Landing Rocket Competition”
    Job Description : Designed avionics systems and integrated electronic control units for a vertical landing rocket prototype.

  • 2022-2023 | Pamukkale University Scientific Research Project (PAU BAP)
    “Development of a textile fabric-based sensor that changes resistance in response to force.”
    Job Description : Executed comprehensive electrical testing, validation, and calibration of resistance-changing smart textile sensors.

  • 2021 | Bachelor's Thesis: Flyback High Voltage Source Design for External Defibrillators
    Selected the appropriate power electronics topology to design a high-voltage circuit providing 130W output power (boosting 24V input to 2500V output) for external defibrillators. Conducted PC-based electronic simulations of the selected topology and successfully translated the design into a functional laboratory prototype.
bottom of page