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Design of multi-dimensional wireless power transfer systems

机译:多维无线电力传输系统的设计

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This paper reports on the study and design of innovative multi-dimensional inductive resonating structures for precise delivery of flux in multi-dimensional wireless power transfer and inductive communication systems. Two cooperating resonators are used. A primary transmitter structure supports a secondary transmitter which is architected in the form of six loops forming a hexagonal frame and created from the same inductor. The six loops are individually wound to carry currents in either one direction or to carry currents in opposing directions without breaking up the resonating loop into separate resonators. By specifying unique number of turns in each loop different flux densities can be created. A primary cooperating resonator of twice the radius of the individual loops in the hexagonal structure is mounted on top of the secondary hexagonal frame to create a strong flux pointing along the major axis of the hexagonal frame. The flux from this larger resonator aids the fluxes from the hexagonal frame and points along its major axis. The design is based on the theory of resonating loops.
机译:本文报告了创新多维电感谐振结构的研究与设计,以便在多维无线电力传输和电感通信系统中精确地输送磁通量。使用两个配合谐振器。主发射器结构支持二次发射器,其以形成六边形框架的六个环的形式架构,并从相同的电感器中创建。六个环是单独缠绕的,以在一个方向上携带电流,或者在没有将共振回路分成单独的谐振器的情况下携带相对的方向上的电流。通过在每个环路中指定唯一的匝数,可以创建不同的通量密度。六边形结构中各个环径半径的主要配合谐振器安装在次级六边形框架的顶部上,以产生沿六边形框架的主轴指向的强通量。来自该较大谐振器的磁通件辅助六边形框架的磁通量,沿其长轴递增。该设计基于谐振循环的理论。

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