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基于多层线圈技术的绞合线横向错位补偿

Compensation for Lateral Misalignment in Litz Wire Based on Multilayer Coil Technology.

作者信息

Chang Hyungjun, Lim Taejun, Lee Yongshik

机构信息

Department of Electrical and Electronic Engineering, Yonsei University, Seoul 03722, Korea.

出版信息

Sensors (Basel). 2021 Mar 25;21(7):2295. doi: 10.3390/s21072295.

Abstract

This study applies a multilayer coil technology that can compensate for a decrease in transfer efficiency due to a lateral misalignment in a practical 100 kHz-band wireless power transfer system and validates its effect on the efficiency of compensation. The effectiveness is investigated using coils fabricated with Litz wires. Three-turn rectangular assistant coils 22.4 × 45.3 mm in size were stacked on a five-turn circular primary coil with a diameter of 45.3 mm in a 2 × 1 array. Transfer efficiency between two such coils was measured by producing lateral misalignment, while maintaining the vertical distance between the Tx and Rx coils at 7 mm. The experimental results showed that the transfer efficiency was compensated by approximately 46.1%P maximum in a misalignment state of 30 mm, which corresponded to 67% of the maximum size of the coil, compared to the transfer efficiency of the structure, in which the multilayer coil was not applied. Furthermore, transfer efficiency was compensated by 37.6%P, even in an asymmetric system in which the multilayer structure was applied only to the Tx coil, thereby confirming an excellent multilayer coil technology effect on compensation for lateral misalignment in practical cases.

摘要

本研究应用了一种多层线圈技术,该技术可补偿实际100kHz频段无线电力传输系统中由于横向错位导致的传输效率下降,并验证其对补偿效率的影响。使用利兹线制造的线圈来研究其有效性。尺寸为22.4×45.3mm的三匝矩形辅助线圈以2×1阵列堆叠在直径为45.3mm的五匝圆形初级线圈上。在保持Tx和Rx线圈之间的垂直距离为7mm的同时,通过产生横向错位来测量两个这样的线圈之间的传输效率。实验结果表明,与未应用多层线圈的结构的传输效率相比,在30mm的错位状态下,传输效率最大可补偿约46.1%P,这相当于线圈最大尺寸的67%。此外,即使在仅将多层结构应用于Tx线圈的非对称系统中,传输效率也可补偿37.6%P,从而证实了多层线圈技术在实际情况下对横向错位补偿具有出色的效果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/65c4/8036525/cb34cd7e90b3/sensors-21-02295-g001.jpg

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