Abstract:
This paper presents for the first time the wireless power transfer (WPT) system that is fully dependent on the etched slot on the ground plane. At first, the defected gro...Show MoreMetadata
Abstract:
This paper presents for the first time the wireless power transfer (WPT) system that is fully dependent on the etched slot on the ground plane. At first, the defected ground structure-based resonator with the circuit area of 20-by-20 sq. mm and a rectangular defect was proposed. Then, it was changed to three rectangular slots to achieve resonance at the desired frequency. Subsequently, the resonators with optimized parameters were aptly utilized to design the WPT system that works at 2.4 GHz. The operating frequency complies with the practical medical body area network band and, therefore, can be employed to the biomedical implants. It has been demonstrated that the perfect coupling can be observed at a distance of 10 mm. As a consequence, at this distance the obtained simulation results of WPT show 67% efficiency and the figure of merit of 0.335.
Date of Conference: 09-11 November 2020
Date Added to IEEE Xplore: 17 February 2021
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- IEEE Keywords
- Index Terms
- Power Transfer ,
- Wireless Power Transfer ,
- Wireless Power Transfer System ,
- Medical Body Area Network ,
- Figure Of Merit ,
- Ground Plane ,
- Body Area Networks ,
- Equivalent Circuit ,
- Impedance Matching ,
- Simulation Technology ,
- Circuit Size ,
- Advanced Design System ,
- Defected Ground Structure ,
- Wireless Body Area Networks ,
- External Capacitor
- Author Keywords
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Index Terms
- Power Transfer ,
- Wireless Power Transfer ,
- Wireless Power Transfer System ,
- Medical Body Area Network ,
- Figure Of Merit ,
- Ground Plane ,
- Body Area Networks ,
- Equivalent Circuit ,
- Impedance Matching ,
- Simulation Technology ,
- Circuit Size ,
- Advanced Design System ,
- Defected Ground Structure ,
- Wireless Body Area Networks ,
- External Capacitor
- Author Keywords