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Coupling Characteristics and Optimization of the Resonators Applied to the Power Supply System of Tail-free Household Appliances

机译:谐振器耦合特性及优化应用于无尾家用电器电源系统

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As household appliances become more and more intelligent, increasingly strict demands are put forward for their power supply. Existing draw-out power supply mode of household appliances has many shortcomings including low waterproof grade, touch spark, and wire constraint. Considering this, a tail-free power supply system based on magnetically-coupled resonant wireless power transfer (MCRWPT) technology is investigated. Aiming at the coupling problems, such as frequency splitting, of the resonator during the design of the system, the analytic calculation is adopted to obtain the advisable domain values of mutual inductance that can evade frequency splitting. On this basis, the authors also carry out theoretical calculation on the combination modes of disc spiral coils and spatial spiral coils so as to attain the accurate mutual inductance between the resonators. In addition, a calculation method more accurate than the traditional Neumann formula is also proposed. The theoretical analysis is finally validated by conducting simulation and experiments and comparing the obtained results.
机译:随着家用电器越来越聪明,对其电源提出了越来越严格的要求。家用电器现有的抽出电源模式具有许多缺点,包括低防水等级,触摸火花和电线约束。考虑到这一点,研究了一种基于磁耦合谐振无线电力传输(MCRWPT)技术的无尾电源系统。针对系统设计期间谐振器的耦合问题,例如谐振器的耦合问题,采用分析计算来获得可以逃避频率分裂的互感的可取域值。在此基础上,作者还对圆盘螺旋线圈和空间螺旋线圈的组合模式进行了理论计算,以便达到谐振器之间的精确互感。此外,还提出了比传统的Neumann公式更准确的计算方法。通过进行模拟和实验并比较所获得的结果,最终验证理论分析。

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