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Poynting vector analysis for wireless power transfer between magnetically coupled coils with different loads

机译:Poynting矢量分析用于不同负载的磁耦合线圈之间的无线电力传输

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摘要

Wireless power transfer is a nonradiative type of transmission that is performed in the near-field region. In this region, the electromagnetic fields that are produced by both the transmitting and receiving coils are evanescent fields, which should not transmit energy. This then raises the question of how the energy can be transferred. Here we describe a theoretical study of the two evanescent field distributions at different terminal loads. It is shown that the essential principle of wireless energy transfer is the superposition of the two evanescent fields, and the resulting superimposed field is mediated through the terminal load. If the terminal load is either capacitive or inductive, then the superimposed field cannot transfer the energy because its Poynting vector is zero; in contrast, if the load is resistive, energy can then be conveyed from the transmitting coil to the receiving coil. The simulation results for the magnetic field distributions and the time-domain current waveforms agree very well with the results of the theoretical analysis. This work thus provides a comprehensive understanding of the energy transfer mechanism involved in the magnetic resonant coupling system.
机译:无线功率传输是在近场区域中执行的非辐射类型的传输。在该区域中,发射线圈和接收线圈都产生的电磁场是are逝场,该场不应传输能量。这就提出了如何传递能量的问题。在这里,我们描述了在不同终端载荷下两个渐逝场分布的理论研究。结果表明,无线能量传输的基本原理是两个渐逝场的叠加,并且最终的叠加场是通过终端负载来调节的。如果终端负载是电容性或电感性负载,则叠加场无法传输能量,因为其Poynting矢量为零;相反,如果负载是电阻性的,则能量可以从发射线圈传输到接收线圈。磁场分布和时域电流波形的仿真结果与理论分析的结果非常吻合。因此,这项工作提供了对磁共振耦合系统中涉及的能量传输机制的全面理解。

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