电感
谐振器耦合系数
感应耦合
最大功率转移定理
联轴节(管道)
漏感
磁通量
漏磁
功率(物理)
气隙(管道)
磁阻
控制理论(社会学)
电子工程
磁路
工程类
电磁线圈
计算机科学
磁铁
材料科学
机械工程
电气工程
电压
物理
磁场
控制(管理)
谐振器
量子力学
人工智能
复合材料
作者
Guangming He,Qianhong Chen,Xiaoyong Ren,Siu‐Chung Wong,Zhiliang Zhang
标识
DOI:10.1109/tie.2018.2860529
摘要
Contactless sliprings (CS) based on inductive power transfer (IPT) offer a safe and reliable power transfer solution for rotary applications. An accurate reluctance model for CS is presented in this paper along with the associated parameters identification, considering the partially linking effect of the magnetic flux. Aiming to obtain higher coupling coefficient and lighter weight, a design optimization for CS is also proposed by defining a new design parameter "ζ." Both simulations and experimental measurements are presented to verify the effectiveness of the proposed modeling method. The maximum errors (between the identified results and the measured results) of the mutual inductance, the leakage inductance, and the coupling coefficient are 8.72%, 7.12%, and 5.98%, respectively, when the gap is less than the core window width. Comparative studies among different modeling methods are carried out, which testify that the proposed method has the highest accuracy. Finally, a 1.5 kW IPT system employing the designed CS is fabricated for verification.
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