高浚凯,齐红丽,王天泽,吉小军.一种应用于不同轴径转轴的感应供电平面阵列线圈结构[J].电子测量与仪器学报,2020,34(4):65-71
一种应用于不同轴径转轴的感应供电平面阵列线圈结构
Inductive power transfer planar array coil structureapplied to shafts of different shaft diameters
  
DOI:
中文关键词:  感应耦合供电  无线供电  转轴  阵列线圈
英文关键词:inductive coupled power transfer (ICPT)  wireless power transfer  shaft  array coil
基金项目:
作者单位
高浚凯 1. 上海交通大学 电子信息与电气工程学院 
齐红丽 2. 中国船舶重工集团公司第 704 研究所 
王天泽 1. 上海交通大学 电子信息与电气工程学院 
吉小军 1. 上海交通大学 电子信息与电气工程学院 
AuthorInstitution
Gao Junkai 1. School of Electronic Information and Electrical Engineering,Shanghai Jiaotong Uninversity 
Qi Hongli 2. No. 704 Research Institute, China Shipbuilding Industry Corporation 
Wang Tianze 1. School of Electronic Information and Electrical Engineering,Shanghai Jiaotong Uninversity 
Ji Xiaojun 1. School of Electronic Information and Electrical Engineering,Shanghai Jiaotong Uninversity 
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中文摘要:
      感应耦合供电(ICPT)技术为旋转结构供电提供了安全高效的解决方案,针对旋转结构传统的侧置式和同轴式感应耦 合供电结构存在耦合结构设计、安装、调试繁琐的缺点,提出了一种感应耦合供电的平面阵列线圈结构。 通过建立精确三维有 限元模型,分析了移动中系统供电的稳定性和抗偏移性。 实验结果表明,该耦合结构消除了传统结构供电时发射与接收线圈位 置保持相对静止的弊端,对运动物体供电具有良好的鲁棒性和可移植性,易于安装和使用,更好地适应移动设备供电。 提取阵 列线圈结构感应供电时接收线圈感应电压幅值的小幅波动,可以同时实现转轴转速测量。
英文摘要:
      Inductive coupled power transfer ( ICPT) technology provides a safe and efficient solution for power supplying of rotating structures. For the disadvantages of design installation and debugging in traditional coaxial and side-mounted structure, this paper presents a planar array coil inductive coupled power transfer structure. It analyzes the stability and offset resistance of the power supply in the mobile system by building the 3D FEM model. The experimental results show that the coupling structure eliminates the disadvantages of the position of the transmitting and receiving coils being relatively static when the traditional structure is powered. It has good robustness and portability to the moving object. It is easy to install and use, and better adapts to the power supply of mobile devices. When this structure is powered, the speed of the rotating shaft can be acquired at the same time by the small fluctuation of the induced voltage amplitude in receiving coil.
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