Wireless power transmission (wpt) application at 2.4 ghz in common network
Explore this paper's citation graph
Summary
This dissertation presents an analytical and experimental study to design and test wireless power transmission systems by electromagnetic propagation coupling.
- Type
- article
- Published
- 2010-12-06
- Cited by
- 17
- References
- 102
- Access
- Open access
- OpenAlex
- https://openalex.org/W24017911
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:107974394
Keywords
Wireless, Power transmission, Transmission (telecommunications), Electrical engineering, Electronic engineering
References
- History of Wireless
- Questions and Answers about Biological Effects and Potential Hazards of Radiofrequency Electromagnetic Fields
- Printed dipole antenna for use in wireless networks: techniques for the design improvement
- A study on the analysis of rectenna efficiency for wireless power transmission
- Planar rectennas for 2.45 GHz wireless power transfer
- Wideband printed and double-sided dipole pair antennas with a parallel reflector
- A multi-functional stacked patch antenna for wireless power beaming and data telemetry
- A compact coplanar stripline lowpass filter
- Experimental Thin-Film, Etched-Circuit Rectenna
- Wireless power engineering as new development stage of microwave and laser engineering
- A wireless power transmission power system for microgravity crystal processing satellites
- Fun with the Friis free-space transmission formula
- Bow-tie retrodirective rectenna
- Reduction of mutual coupling between closely-packed antenna elements using defected ground structure
- Wireless Power Transfer via Strongly Coupled Magnetic Resonances
- WiTricity-The Wireless Power Transfer [Mobile Radio]
- Space solar power programs and microwave wireless power transmission technology
- Design and experiments of a high-conversion-efficiency 5.8-GHz rectenna
- Robustness comparison of bow-tie and dipole antennas
- Electromagnetic fields and public health.
Cited by
- Investigation of Rectifier Circuit Configurations for Microwave Power Transmission System Operating at S Band
- Decoupled dual-dipole rectennas on a conducting surface at 2.4 GHz for wireless battery charging
- A Comparative Study of Wireless Power Transmission Techniques
- Antenna and rectifier designs for miniaturized radio frequency energy scavenging systems
- Ambient RF energy harvesting and efficient DC-load inductive power transfer
- Design, Simulation and Fabrication of Rectenna Circuit at S - Band for Microwave Power Transmission
- A Review on Wireless Power Transfer
- Antennas and Metamaterials for Electromagnetic Energy Harvesting
- On the optimization of GaN Schottky Diode rectifier circuit topologies for high efficiency Wireless Power Transmission
- Analysis and Optimization of Ultra-Low-Power Rectifier with High Efficiency for Applications in Wireless Power Transmission and Energy Harvesting
- A Systematic Review of Wireless Transmission System
- Rectenna System Development Using Harmonic Balance and S-Parameters for an RF Energy Harvester
- Development of Rectifier Performance Using Harmonic Balance Simulation for RF Energy Harvester Prototype
- Wireless Power Transfer Optimization with a Minimalist Single-Capacitor Design for Battery Charging
- Rectennas for Microwave-Based Wireless Power Transfer (WPT)
Related papers
- Wireless Power Transmission: A survey
- Prototype of 5.8 GHz wireless power transmission system for electric vehicle system (回路とシステム)
- Mid-distance wireless power transmission for electric truck via microwaves
- Review of the wireless power transmission technology
- Wireless charging for electric vehicle with microwaves
- Electromagnetic Wireless Power Transmission Power Supply Design
- Wireless power transmission progress for electric vehicle in Japan
- Wireless Power Transfer: Survey and Roadmap
- Implementation of 1.7MHz, 25W Wireless Power Transmission(WPT) System using Coupled Magnetic Resonance
- Communications and Signals Design for Wireless Power Transmission