Abstract

Magnetically coupled resonant wireless transmission of practice teaching platform is a high-tech system, and magnetically coupled resonant wireless power transmission experiment design and verification can be carried out on this platform by students. This thesis discusses the importance of efficient wireless energy transfer technology applied to distance magnetically coupled resonance technology in the practice of teaching from the practice teaching system of magnetically coupled resonant wireless transmission mechanism, the establishment and application of practice teaching system. It provides a system platform for students to establish wireless power transmission model and to apply the mutual inductance principle and coupling theory to derive the transmission efficiency for obtaining the key factors that affect the transmission efficiency such as the resonant frequency, the coil mutual inductance and the coil quality factor, etc., and to draw the conclusions of the above theoretical analysis verified by experiments

Highlights

  • Coupled resonance photoelectric wireless energy transmission technology is the use of non-radiative magnetic coupled resonance principle for photoelectric distance energy transmission[1]

  • This transmission is unique in the use of the resonance principle, two coils for wireless energy transfer from resonance, and the impedance of the coil circuit is minimized, so most of the energy transmitted to the resonance direction

  • Maxwell's equations coupled with the use of model theory (Coupled Mode Theory, coupled-mode theory (CMT)) energy transmission coupling body in such a strong research

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Summary

Introduction

Coupled resonance photoelectric wireless energy transmission technology is the use of non-radiative magnetic coupled resonance principle for photoelectric distance energy transmission[1]. Through the above mathematical model, to meet the strong coupling condition, the same natural resonant frequencies of the two coils with a different state, higher by experimental analysis of the energy-transfer efficiency which states the two resonant coils.

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