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Research on Influence Rules of Metal Sheet on Magnetic Resonance Coupling Wireless Power Transmission System

机译:薄板对磁共振耦合无线电力传输系统影响规律的研究

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W370 the magnetic resonance coupling wireless power transmission system works between metal sheets, its transmission performance may be affected due to intercoupling between the metal sheet and the alternating field. In view of this, a dual-coil circuit model of magnetic resonance coupling wireless power transmission system that considers the influence of metal sheet is established to derive the transmission power and efficiency expressions of the system. An electromagnetic simulation model of dual-coil transmission system under the influence of metal sheet is established by using the Maxwell and Simplorer joint simulation method. The rules of influence of metal sheet on transmission performance of the system are revealed through experimental test, the result of which shows that, compared with non-ferromagnetic metal media, the ferromagnetic metal media has stronger influence on transmission performance of the system and causes greater attenuation of transmission performance parameters. When the gap between the metal sheet and the coil is less than 15 mm, the influence of the metal sheet on transmission efficiency of the system is especially evident (the efficiency reduces to less than half of that in air or even lower). When the gap is greater than 15 mm, the influence weakens and becomes stable gradually. The test result is consistent with the simulation conclusion.
机译:W370磁共振耦合无线电力传输系统在金属薄板之间工作,由于金属薄板和交变场之间的相互耦合,可能会影响其传输性能。鉴于此,建立了考虑金属板影响的磁共振耦合无线电力传输系统的双线圈电路模型,以推导系统的传输功率和效率表达式。利用Maxwell和Simplorer联合仿真方法建立了在金属薄板影响下双线圈传动系统的电磁仿真模型。通过实验测试揭示了金属薄板对系统传输性能的影响规律,结果表明,与非铁磁金属介质相比,铁磁金属介质对系统传输性能的影响更大,并引起更大的影响。衰减传输性能参数。当金属板和线圈之间的间隙小于15 mm时,金属板对系统传输效率的影响尤为明显(效率降低到空气中的一半以下,甚至更低)。当间隙大于15 mm时,影响减弱并逐渐稳定。测试结果与仿真结论吻合。

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