Wireless Power Transfer via Strongly Coupled Magnetic Resonances
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Summary
A quantitative model is presented describing the power transfer of self-resonant coils in a strongly coupled regime, which matches the experimental results to within 5%.
- Type
- article
- Published
- 2007-07-06
- Cited by
- 5,562
- References
- 22
- Access
- Open access
- OpenAlex
- https://openalex.org/W1985705155
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:17105396
Keywords
Wireless power transfer, RADIUS, Resonant inductive coupling, Power (physics), Transfer (computing)
References
- Waves and fields in optoelectronics
- A Chiral Route to Negative Refraction
- A new approach to power supplies for robots
- Observation of strong coupling between one atom and a monolithic microresonator
- On the Mid Range
- Wireless transmission of power and information and information for cableless linear motor drive
- IECON'03. 29th Annual Conference of the IEEE Industrial Electronics Society (IEEE Cat. No.03CH37468)
- Thesis
- Massachusetts Institute of Technology
- Vacuum-tube oscillators
- ‡ To whom correspondence should be addressed:
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- A high-impedance detector-array glove for magnetic resonance imaging of the hand
- TRAFFIC OPERATIONS ANALYSIS OF MERGING STRATEGIES FOR VEHICLES IN AN AUTOMATED ELECTRIC TRANSPORTATION SYSTEM
- A note on numerical solution of wireless power transmission with magnetic resonance
- Contribution à l'étude de la transmission d'énergie à distance par µondes
- Power Transfer via Metamaterials
- Automated Resonant Wireless Power Transfer to Remote Sensors from an Unmanned Aerial Vehicle
- A Comparative Study of Power Supply Architectures In Wireless Electric Vehicle Charging Systems
- MULTIPLE-RESONATOR MAGNETIC RESONANT COUPLING WIRELESS POWER TRANSFER
- New methods for capacitive wireless power transfer
- The Extended Mind and Network-Enabled Cognition
- A Literature Review in Dynamic Wireless Power Transfer for Electric Vehicles: Technology and Infrastructure Integration Challenges
- A Study of Selected Aspects of Electromagnetic Formation Flight
- Wireless Interconnect using Inductive Coupling in 3D-ICs.
- An Implantable Microsystem for Autonomous Intraocular Pressure Monitoring
- Design of Analog CMOS Circuits for Batteryless Implantable Telemetry Systems
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