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Through-Hole Contactless Slipring System Based on Rotating Magnetic Field for Rotary Applications

机译:旋转应用中基于旋转磁场的通孔非接触滑行系统

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摘要

Contactless slipring system based on inductive power transfer is a preferable alternative to mechanical slipring assemblies. They are designed to deliver required output power to a rotary shaft without direct electrical contacts. The current single or multiple-unit through-hole single-phase systems often have limited power transfer capability within a confined physical space; thus, they may not be able to meet the load requirement for certain applications such as wind power pitch control. This paper presents an integrated polyphase through-hole contactless slipring system by generating a rotating primary magnetic field coupled with balanced power pickups at the secondary side with zero mechanical driving torque on the shaft. A new index termed “mutual inductance per pole” is introduced to simplify the analysis of the mutually coupled polyphase system to a single-phase basis. Simulation and practical experiments have demonstrated that, with the same physical size, the proposed contactless slipring setup can transfer 55% more power compared with the existing single-phase counterpart.
机译:基于感应功率传递的非接触式滑环系统是机械滑环组件的首选替代方案。它们旨在将所需的输出功率传递到旋转轴,而无需直接电接触。当前的单单元或多单元通孔单相系统通常在有限的物理空间内具有有限的功率传输能力。因此,它们可能无法满足某些应用(例如风电变桨控制)的负载要求。本文提出了一种集成的多相通孔无接触滑环系统,该系统通过在次级侧产生旋转的初级磁场并与平衡功率传感器耦合,从而在轴上实现零机械驱动转矩。引入了一个称为“每极互感”的新指标,以将相互耦合的多相系统的分析简化为单相。仿真和实践实验表明,在相同的物理尺寸下,与现有的单相同类产品相比,拟议的非接触式滑环设置可传输55%的功率。

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