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Control Method for Wireless Inductive Energy Transfer Systems With Relatively Large Air Gap

机译:气隙较大的无线感应能量传输系统的控制方法

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Recent improvements in semiconductor technology make efficient switching possible at higher frequencies, which benefits the application of wireless inductive energy transfer. However, a higher frequency does not alter the magnetic coupling between energy transmitter and receiver. Due to the still weak magnetic coupling between transmitting and receiving sides that are separated by a substantial air gap, energy circulates in the primary transmitting side without being transferred to the secondary receiving side. This paper introduces an energy control method that reduces energy circulation in the primary to zero. The method makes use of the fact that energy can be stored in a magnetic field by the primary side and absorbed by the secondary side. Furthermore, the secondary side converter topology is modified in order to boost the damping as seen by the primary converter at required times. Essentially, the control method realizes an energetic coupling factor of one between the air coils of the wireless transformer. The working principle of the control method has been verified with an experimental setup.
机译:半导体技术的最新改进使得在更高的频率下进行有效切换成为可能,这有利于无线感应能量传输的应用。但是,较高的频率不会改变能量发送器和接收器之间的磁耦合。由于在发送侧和接收侧之间仍然存在弱的磁耦合,这些磁耦合之间被相当大的气隙隔开,因此能量在一次发送侧循环,而没有传递到二次接收侧。本文介绍了一种能量控制方法,可将一次侧的能量循环减少到零。该方法利用以下事实:能量可以在初级侧存储在磁场中,并在次级侧吸收。此外,对次级侧转换器拓扑进行了修改,以增强阻尼,如在所需时间由初级转换器看到的那样。本质上,该控制方法实现了无线变压器的空气线圈之间的能量耦合因子为一。该控制方法的工作原理已通过实验设置得到验证。

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