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Transmission efficiency analysis and optimization of magnetically coupled resonant wireless power transfer system with misalignments

机译:失准的磁耦合谐振无线电力传输系统的传输效率分析与优化

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Magnetically coupled resonant (MCR) wireless power transfer (WPT) is a promising technology, which has been widely used in many practical applications. In the practical application environment the misalignments between the transmitting coil and the receiving coil can not be avoided, and it will cause a rapid decline in transmission efficiency. So the misalignments have limited the applications of MCR-WPT technology in many fields. The mathematical formula of transmission efficiency with angular misalignment and lateral misalignment was deduced. And the effects of angular misalignment and lateral misalignment on the transmission efficiency were researched by simulation experiments. And the changing regularity of the transmission efficiency with the change of the angular misalignment and lateral misalignment was obtained. The results show that when there is an angular misalignment between the transmitting coil and the receiving coil, the transmission efficiency can be optimized by adjusting the lateral misalignment between the coils. And when there is a lateral misalignment between the coils, the transmission efficiency can be optimized by adjusting the angular misalignment between the coils. An experimental prototype of MCR-WPT system was built, and experiments had been carried out to evaluate the accuracy of the theoretical analysis. Therefore, the study in this paper lay a theoretical foundation for the analysis of WPT in the complex environment, and also provide a useful reference for the design of WPT system.
机译:磁耦合谐振(MCR)无线功率传输(WPT)是一项很有前途的技术,已在许多实际应用中广泛使用。在实际应用环境中,无法避免发射线圈和接收线圈之间的不对中,并且会导致传输效率迅速下降。因此,未对准限制了MCR-WPT技术在许多领域中的应用。推导了具有角度不对中和横向不对中的传输效率的数学公式。通过仿真实验研究了角度不对中和横向不对中对传输效率的影响。并得到了传输效率随角度未对准和横向未对准的变化规律。结果表明,当发射线圈和接收线圈之间存在角度失准时,可以通过调整线圈之间的横向失准来优化传输效率。并且当线圈之间存在横向未对准时,可以通过调节线圈之间的角度未对准来优化传输效率。建立了MCR-WPT系统的实验原型,并进行了实验以评估理论分析的准确性。因此,本文的研究为复杂环境下WPT的分析奠定了理论基础,也为WPT系统的设计提供了有益的参考。

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