Review of Wireless Charging Systems for Autonomous Underwater Vehicles
暂无分享,去创建一个
Zeljko Pantic | David N. Beal | Chakridhar Reddy Teeneti | Tadd Truscott | D. Beal | T. Truscott | Z. Pantic | C. R. Teeneti | Zeljko Pantic
[1] Robert Warren Button,et al. A Survey of Missions for Unmanned Undersea Vehicles , 2009 .
[2] Song Baowei,et al. Comparison of two electromagnetic couplers in an inductive power transfer system for Autonomous Underwater Vehicle docking application , 2016, OCEANS 2016 - Shanghai.
[3] Ying Chen,et al. Design considerations for electromagnetic couplers in contactless power transmission systems for deep-sea applications , 2010, Journal of Zhejiang University SCIENCE C.
[4] Morris Kesler,et al. HIGHLY RESONANT WIRELESS POWER TRANSFER IN SUBSEA APPLICATIONS , 2013 .
[5] Zeljko Pantic,et al. Analysis, Design, and Demonstration of a 25-kW Dynamic Wireless Charging System for Roadway Electric Vehicles , 2018, IEEE Journal of Emerging and Selected Topics in Power Electronics.
[6] Kai Song,et al. Design and Loss Analysis of Loosely Coupled Transformer for an Underwater High-Power Inductive Power Transfer System , 2015, IEEE Transactions on Magnetics.
[7] D. Doerffel,et al. PERFORMANCE OF LITHIUM-POLYMER CELLS AT HIGH HYDROSTATIC PRESSURE , 2006 .
[8] David A. White,et al. Technical overview of a safe, configurable, pressure tolerant, subsea Lithium Ion battery system for oil and gas deep water fields , 2013, 2013 OCEANS - San Diego.
[9] Graham Sanborn,et al. Standards and methods of power control for variable power bidirectional wireless power transfer , 2017, 2017 IEEE Wireless Power Transfer Conference (WPTC).
[10] L. A. Gish. Design of an AUV recharging system , 2004 .
[11] Gwyn Griffiths,et al. Energy storage for long endurance AUVs , 2004 .
[12] Riccardo Pittini,et al. Pressure-Tolerant Power Electronics for Deep and Ultradeep Water , 2011 .
[13] M. Tanomura,et al. Underwater wireless power transfer for non-fixed unmanned underwater vehicle in the ocean , 2016, 2016 IEEE/OES Autonomous Underwater Vehicles (AUV).
[14] B.W. Hobson,et al. The Development and Ocean Testing of an AUV Docking Station for a 21" AUV , 2007, OCEANS 2007.
[15] R. D. Lorenz,et al. Contactless Power Delivery System for Mining Applications , 1991, IEEE Transactions on Industry Applications.
[16] W. Brown,et al. An experimental microwave-powered helicopter , 1965 .
[17] Robert D. Lorenz,et al. Contactless underwater power delivery , 1994, Proceedings of 1994 Power Electronics Specialist Conference - PESC'94.
[18] Gong-Ru Lin,et al. Blue Laser Diode Enables Underwater Communication at 12.4 Gbps , 2017, Scientific Reports.
[19] Grant Anthony Covic,et al. Modern Trends in Inductive Power Transfer for Transportation Applications , 2013, IEEE Journal of Emerging and Selected Topics in Power Electronics.
[20] Brian R. Page. Design of a Mobile Underwater Charging System , 2016 .
[21] F. Canales,et al. Modeling and η-α-Pareto Optimization of Inductive Power Transfer Coils for Electric Vehicles , 2015 .
[22] T. Austin,et al. Autonomous Docking Demonstrations with Enhanced REMUS Technology , 2006, OCEANS 2006.
[23] Jervis J. Gennari,et al. A Review of Pressure-Tolerant Electronics (PTE) , 1976 .
[24] M. D. Feezor,et al. An interface system for autonomous undersea vehicles , 2001 .
[25] R. Stokey,et al. Enabling technologies for REMUS docking: an integral component of an autonomous ocean-sampling network , 2001 .
[26] T. Ura,et al. High Speed Acoustic Network And Noncontact Power Supplier For Seafloor Geodetic Observing Robot System , 2006, OCEANS 2006 - Asia Pacific.
[27] M. D. Feezor,et al. Autonomous underwater vehicle homing/docking via electromagnetic guidance , 1997, Oceans '97. MTS/IEEE Conference Proceedings.
[28] Srdjan M. Lukic,et al. ZCS $LCC$-Compensated Resonant Inverter for Inductive-Power-Transfer Application , 2011, IEEE Transactions on Industrial Electronics.
[29] ヒュプナー・ブルクハルト. Apparatus for transmitting electrical energy , 2009 .
[30] Hanumant Singh,et al. Power systems for autonomous underwater vehicles , 2001 .
[31] P. Balsara,et al. Wireless Power Transfer for Vehicular Applications: Overview and Challenges , 2018, IEEE Transactions on Transportation Electrification.
[32] Ming Ting-tao,et al. Design of loosely coupled inductive power transfer systems , 2006 .
[33] James M. Cena. Power transfer efficiency of mutually coupled coils in an aluminum AUV hull , 2013 .
[34] Donald W. Novotny,et al. Design considerations for high-frequency coaxial winding power transformers , 1993 .
[35] T. Matsumoto,et al. Power Feeding and Data-Transmission System Using Magnetic Coupling for an Ocean Observation Mooring Buoy , 2007, IEEE Transactions on Magnetics.
[36] R.J. Komerska,et al. Long-Endurance Test Results of the Solar-Powered AUV System , 2006, OCEANS 2006.
[37] Hanumant Singh,et al. Docking for an autonomous ocean sampling network , 2001 .
[38] L. M. Pessoa,et al. System design for wireless powering of AUVs , 2017, OCEANS 2017 - Aberdeen.
[39] Wei Zhang,et al. Compensation Topologies of High-Power Wireless Power Transfer Systems , 2016, IEEE Transactions on Vehicular Technology.
[40] S.Y.R. Hui,et al. A new generation of universal contactless Battery Charging platform for portable Consumer Electronic equipment , 2004, IEEE Transactions on Power Electronics.
[41] John D. Rockway,et al. Underwater wireless power transfer for maritime applications , 2015, 2015 IEEE Wireless Power Transfer Conference (WPTC).
[42] Chunting Chris Mi,et al. A Rotation-Resilient Wireless Charging System for Lightweight Autonomous Underwater Vehicles , 2018, IEEE Transactions on Vehicular Technology.
[43] Wei Gu,et al. Analysis and experimental results of frequency splitting of underwater wireless power transfer , 2017 .
[44] F. Sato,et al. Automatic power supply system to underwater vehicles utilizing non-contacting technology , 2004, Oceans '04 MTS/IEEE Techno-Ocean '04 (IEEE Cat. No.04CH37600).
[45] Grant Covic,et al. Power transfer capability and bifurcation phenomena of loosely coupled inductive power transfer systems , 2004, IEEE Transactions on Industrial Electronics.
[46] F. Sato,et al. Construction of non-contacting power feeding system to underwater vehicle utilizing electro magnetic induction , 2005, Europe Oceans 2005.
[47] Zhaojian Yang,et al. Modeling and simulation of contact-less power transformers for underwater application , 2009, 2009 International Conference on Mechatronics and Automation.
[48] G. Luoni,et al. Induced currents and losses in single-core submarine cables , 1976, IEEE Transactions on Power Apparatus and Systems.
[49] Wangqiang Niu,et al. Frequency splitting of underwater wireless power transfer , 2016, 2016 IEEE International Workshop on Electromagnetics: Applications and Student Innovation Competition (iWEM).
[50] A. Brighenti,et al. EURODOCKER-a universal docking-downloading recharging system for AUVs: conceptual design results , 1998, IEEE Oceanic Engineering Society. OCEANS'98. Conference Proceedings (Cat. No.98CH36259).
[51] De-Min Xu,et al. A power distribution model of magnetic resonance WPT system in seawater , 2016, 2016 IEEE 2nd Annual Southern Power Electronics Conference (SPEC).
[52] Rui Gomes,et al. An adaptive system for underwater wireless power transfer , 2016, 2016 8th International Congress on Ultra Modern Telecommunications and Control Systems and Workshops (ICUMT).
[53] Peng Zhang,et al. Analysis, Design, and Maximum Power-Efficiency Tracking for Undersea Wireless Power Transfer , 2018, IEEE Journal of Emerging and Selected Topics in Power Electronics.
[54] Ying Chen,et al. Frequency selection of an inductive contactless power transmission system for ocean observing , 2013 .
[55] C. C. Eriksen,et al. Seaglider: a long-range autonomous underwater vehicle for oceanographic research , 2001 .
[56] John D. Rockway,et al. Characterization of Coupled Coil in Seawater for Wireless Power Transfer , 2013 .
[57] Zhengchao Yan,et al. Research on characteristics of contactless power transmission device for autonomous underwater vehicle , 2016, OCEANS 2016 - Shanghai.
[58] Anindya Chitta Bagchi,et al. Analytical Optimization of a Litz Wire Spiral Coil Based Underwater IPT System , 2018, 2018 IEEE Energy Conversion Congress and Exposition (ECCE).
[59] Naoto Wakatsuki,et al. Wireless power and data transfer system for station-based autonomous underwater vehicles , 2015, OCEANS 2015 - MTS/IEEE Washington.
[60] Paolo Dario,et al. Autonomous Underwater Biorobots: A Wireless System for Power Transfer , 2013, IEEE Robotics & Automation Magazine.
[61] Jiayi Xu,et al. Design and Optimization of an Inductively Coupled Power Transfer System for the Underwater Sensors of Ocean Buoys , 2017 .
[62] Christopher M. Baer,et al. Non-contact wet mateable connectors for power and data transmission , 2013, 2013 OCEANS - San Diego.
[63] Canjun Yang,et al. Design and analysis of an underwater inductive coupling power transfer system for autonomous underwater vehicle docking applications , 2014, Journal of Zhejiang University SCIENCE C.
[64] Sajad Saeedi,et al. AUV Navigation and Localization: A Review , 2014, IEEE Journal of Oceanic Engineering.
[65] T. Kawasaki,et al. "MARINE BIRD", a new experimental AUV with underwater docking and recharging system , 2003, Oceans 2003. Celebrating the Past ... Teaming Toward the Future (IEEE Cat. No.03CH37492).
[66] Young Dae Ko,et al. The Optimal System Design of the Online Electric Vehicle Utilizing Wireless Power Transmission Technology , 2013, IEEE Transactions on Intelligent Transportation Systems.
[67] Study on underwater wireless power transfer via electric coupling with a submerged electrode , 2017, 2017 IEEE International Meeting for Future of Electron Devices, Kansai (IMFEDK).
[68] R. Coulson,et al. Development of a modular docking sub-system for 12" class autonomous underwater vehicles , 2004, Oceans '04 MTS/IEEE Techno-Ocean '04 (IEEE Cat. No.04CH37600).
[69] Martin Luck,et al. Pressure tolerant systems for deep sea applications , 2010, OCEANS'10 IEEE SYDNEY.
[70] Cheng Fang,et al. Contactless power and data transmission for underwater sensor nodes , 2013, EURASIP J. Wirel. Commun. Netw..
[71] Benedetto Allotta,et al. Wireless power recharge for underwater robotics , 2017, 2017 IEEE International Conference on Environment and Electrical Engineering and 2017 IEEE Industrial and Commercial Power Systems Europe (EEEIC / I&CPS Europe).
[72] V. K. Agrawal,et al. Indigenous design and development of underwater wireless power transfer system , 2016, 2016 Twenty Second National Conference on Communication (NCC).
[73] J. Flynn,et al. Current and Future Wet-Mate Connector Technology Developments for Scientific Seabed Observatory Applications , 2006, OCEANS 2006.
[74] Neil W. Bergmann,et al. Wireless underwater power and data transfer , 2013, 38th Annual IEEE Conference on Local Computer Networks - Workshops.
[75] T. McGinnis,et al. Inductive Power System for Autonomous Underwater Vehicles , 2007, OCEANS 2007.
[76] John D. Rockway,et al. Marine Fouling and Thermal Dissipation of Undersea Wireless Power Transfer , 2014 .
[77] Kevin Lin,et al. Underwater wireless power transfer , 2015, 2015 IEEE Wireless Power Transfer Conference (WPTC).
[78] Hiroshi Yoshida. Fundamentals of Underwater Vehicle Hardware and Their Applications , 2009 .
[79] Chaoyang Wang,et al. Li-Ion Cell Operation at Low Temperatures , 2013 .
[80] H. M. Santos,et al. Assessment of design trade-offs for wireless power transfer on seawater , 2016, OCEANS 2016 MTS/IEEE Monterey.
[81] Taofeek Orekan,et al. Underwater Wireless Power Transfer: Smart Ocean Energy Converters , 2018 .
[82] Gyu-Hyeong Cho,et al. General Unified Analyses of Two-Capacitor Inductive Power Transfer Systems: Equivalence of Current-Source SS and SP Compensations , 2015, IEEE Transactions on Power Electronics.
[83] O. Hasvold,et al. The alkaline aluminium hydrogen peroxide semi-fuel cell for the HUGIN 3000 autonomous underwater vehicle , 2002, Proceedings of the 2002 Workshop on Autonomous Underwater Vehicles, 2002..
[84] Francisco Gonçalves,et al. A study on load modulation for underwater wireless power transfer , 2017, OCEANS 2017 - Aberdeen.
[85] Juan Li,et al. Reviews of power systems and environmental energy conversion for unmanned underwater vehicles , 2012 .
[86] M. Kraichman,et al. Impedance of a circular loop in an infinite conducting medium , 1962 .
[87] Grant A. Covic,et al. LCL Pickup Circulating Current Controller for Inductive Power Transfer Systems , 2013, IEEE Transactions on Power Electronics.
[88] Jon Are Suul,et al. Wireless Charging for Ships: High-Power Inductive Charging for Battery Electric and Plug-In Hybrid Vessels , 2017, IEEE Electrification Magazine.
[89] Si-ling Wang,et al. Automatic wireless power supply system to autonomous underwater vehicles by means of electromagnetic coupler , 2014 .
[90] Yang Wang,et al. Research on three-dimensional omnidirectional wireless power transfer system for subsea operation , 2017, OCEANS 2017 - Aberdeen.
[91] Edin Omerdic,et al. Inspection-Class Remotely Operated Vehicles—A Review , 2017 .
[92] Qiang Zhang,et al. Construction of Contactless Power Feeding System for Ocean Buoy , 2011, 2011 7th International Conference on Wireless Communications, Networking and Mobile Computing.
[93] Alonzo Jenkins,et al. Impedance of a coil in seawater , 2014, 2014 IEEE Antennas and Propagation Society International Symposium (APSURSI).
[94] Minkyu Je,et al. High-Efficiency Wireless Power Transfer for Biomedical Implants by Optimal Resonant Load Transformation , 2013, IEEE Transactions on Circuits and Systems I: Regular Papers.
[95] B. Bett,et al. Autonomous Underwater Vehicles (AUVs): Their past, present and future contributions to the advancement of marine geoscience , 2014 .
[96] M. Tanomura,et al. Long distance high efficient underwater wireless charging system using dielectric-assist antenna , 2014, 2014 Oceans - St. John's.