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A novel detached magnetic coupling structure for contactless power transfer

机译:一种用于非接触式功率传输的新型分离式磁耦合结构

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A contactless slipring offers an alternative solution to a mechanical slipring for power transfer, and magnetic coupling is the key part of the system. This paper proposes a novel detached magnetic coupling structure used for contactless sliprings systems. To minimize the losses and increase the power transfer capability, a magnetic coupling structure with unique core geometry is proposed for a rotating transformer to transfer electrical power between the two parts. A Finite-Element-Boundary-Element (FEM-BEM) model is developed and FEM analysis conducted. The proposed contactless slipring system has been verified by simulation. The output power, efficiency, voltage gain and current gain are presented to assess the performance of the system. It has been found that the fringing flux on the windings affects the conduction losses and the EMI greatly, and it can be reduced by placing the winding away from the air-gap of the core. Practical design considerations as well as the advantages of the proposed structure as compared to a typical coaxial design of rotating transformer have been discussed. It has been shown that the proposed coupling structure can deliver up to 4.35 KW of power at a 25 Ω resistive load. An excellent magnetic coupling coefficient of 0.92 is achieved as a result of the specific core geometry with a single air gap. The voltage gain for this system is 0.83, which indicates a low internal voltage drop on the coupled coils.
机译:非接触式滑环为机械式滑环提供了另一种解决方案,以进行动力传输,而磁耦合是系统的关键部分。本文提出了一种用于非接触式滑环系统的新型分离式磁耦合结构。为了使损耗最小化并增加功率传输能力,提出了一种具有独特铁芯几何形状的磁耦合结构,用于旋转变压器在两部分之间传输电能。建立了有限元边界元(FEM-BEM)模型并进行了有限元分析。所提出的非接触式滑环系统已通过仿真验证。给出了输出功率,效率,电压增益和电流增益,以评估系统的性能。已经发现,绕组上的边缘磁通会极大地影响传导损耗和EMI,并且可以通过将绕组远离磁芯的气隙来减小它。与旋转变压器的典型同轴设计相比,已经讨论了实际的设计注意事项以及所提出的结构的优点。已经表明,所提出的耦合结构可以在25Ω的电阻负载下提供高达4.35 KW的功率。由于具有单个气隙的特定铁芯几何形状,因此实现了0.92的出色磁耦合系数。该系统的电压增益为0.83,这表明耦合线圈上的内部电压降很低。

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