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A Rotation-Resilient Wireless Charging System for Lightweight Autonomous Underwater Vehicles

IEEE transactions on vehicular technology, v.67 no.8, 2018년, pp.6935 - 6942  

Kan, Tianze (Department of Electrical and Computer Engineering, San Diego State University, San Diego, CA, USA) ,  Zhang, Yiming (Department of Electrical and Computer Engineering, San Diego State University, San Diego, CA, USA) ,  Yan, Zhengchao (Department of Electrical and Computer Engineering, San Diego State University, San Diego, CA, USA) ,  Mercier, Patrick P. (Department of Electrical and Computer Engineering, University of California San Diego, La Jolla, CA, USA) ,  Mi, Chunting Chris (Department of Electrical and Computer Engineering, San Diego State University, San Diego, CA, USA)

Abstract AI-Helper 아이콘AI-Helper

This paper presents a rotation-resilient wireless charging system with a reversely wound receiver that supports efficient charging for lightweight autonomous underwater vehicles. By employing a two-part reversely wound receiver coil structure, the total mutual inductance of the proposed coil structu...

참고문헌 (20)

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  5. Shi, Jian-guang, Li, De-jun, Yang, Can-jun. Design and analysis of an underwater inductive coupling power transfer system for autonomous underwater vehicle docking applications. Journal of Zhejiang University. Science C : Computers & electronics, vol.15, no.1, 51-62.

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  7. Kan, Tianze, Mai, Ruikun, Mercier, Patrick P., Mi, Chunting Chris. Design and Analysis of a Three-Phase Wireless Charging System for Lightweight Autonomous Underwater Vehicles. IEEE transactions on power electronics, vol.33, no.8, 6622-6632.

  8. 10.1109/OCEANSAP.2016.7485444 

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  10. Kan, Tianze, Nguyen, Trong-Duy, White, Jeff C., Malhan, Rajesh K., Mi, Chunting Chris. A New Integration Method for an Electric Vehicle Wireless Charging System Using LCC Compensation Topology: Analysis and Design. IEEE transactions on power electronics, vol.32, no.2, 1638-1650.

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  13. Raju, Salahuddin, Rongxiang Wu, Mansun Chan, Yue, C. Patrick. Modeling of Mutual Coupling Between Planar Inductors in Wireless Power Applications. IEEE transactions on power electronics, vol.29, no.1, 481-490.

  14. Dukju Ahn, Mercier, Patrick P.. Wireless Power Transfer With Concurrent 200-kHz and 6.78-MHz Operation in a Single-Transmitter Device. IEEE transactions on power electronics, vol.31, no.7, 5018-5029.

  15. Mercier, Patrick P., Chandrakasan, Anantha P.. Rapid Wireless Capacitor Charging Using a Multi-Tapped Inductively-Coupled Secondary Coil. IEEE transactions on circuits and systems. a publication of the IEEE Circuits and Systems Society. I, Regular papers, vol.60, no.9, 2263-2272.

  16. Xiao, Chunyan, Wei, Kangzheng, Cheng, Dingning, Liu, Yufeng. Wireless Charging System Considering Eddy Current in Cardiac Pacemaker Shell: Theoretical Modeling, Experiments, and Safety Simulations. IEEE transactions on industrial electronics : a publication of the IEEE Industrial Electronics Society, vol.64, no.5, 3978-3988.

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  18. IEEE J Emerg Sel Topics Power Electron Wireless power transfer for electric vehicle applications li 2015 10.1109/JESTPE.2014.2319453 3 4 

  19. Feezor, M.D., Yates Sorrell, F., Blankinship, P.R.. An interface system for autonomous undersea vehicles. IEEE journal of oceanic engineering, vol.26, no.4, 522-525.

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