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首页> 外文期刊>Trends in Ecology & Evolution >A 50-kW Three-Phase Wireless Power Transfer System Using Bipolar Windings and Series Resonant Networks for Rotating Magnetic Fields
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A 50-kW Three-Phase Wireless Power Transfer System Using Bipolar Windings and Series Resonant Networks for Rotating Magnetic Fields

机译:使用双极绕组和串联谐振网络的50kW三相无线电力传输系统,用于旋转磁场

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摘要

The mass and volume of wireless power transfer (WPT) systems for charging electric vehicles are directly related to the rated power of the system. The difficulties of high-power wireless charging are exacerbated by the need to meet the same practical constraints associated with vehicle integration as lower power systems. Therefore, more advanced techniques are necessary to improve power density and specific power of wireless charging systems for high-power applications. This article presents theory and analysis of three-phase inductive WPT systems with bipolar phase windings. Magnetic coupler topologies and the theoretical and practical aspects of series three-phase resonant compensation networks are discussed. The systems under consideration are designed to utilize rotating magnetic fields to achieve a power transfer characteristic that is temporally smoother than single-phase systems. Other benefits associated with rotating magnetic field based WPT, including reduced ferrite mass, filter component requirements, and electromagnetic field emissions, are discussed. Experimental results of a prototype system are presented in both aligned and misaligned configurations. The system is demonstrated transferring 50 & x00A0;kW with 95 & x0025; dc-to-dc efficiency over a 150-mm airgap in the aligned case. On a per-pad basis, the magnetic couplers achieve a power density of 195 & x00A0;kW/m and a specific power of 3.65 kW/kg. This article is accompanied by a video of the rotating magnetic field produced by a simulated three-phase WPT system.
机译:用于充电电动车辆的无线电力传输(WPT)系统的质量和体积与系统的额定功率直接相关。大功率无线充电的困难使得需要满足与车辆集成相关的相同实际限制作为较低功率系统。因此,需要更先进的技术来提高用于高功率应用的无线充电系统的功率密度和特定功率。本文介绍了双相绕组三相电感WPT系统的理论和分析。讨论了磁耦合器拓扑和系列三相谐振补偿网络的理论和实践方面。所考虑的系统旨在利用旋转磁场来实现比单相系统更平滑的动力传递特性。讨论了与旋转磁场的WPT相关的其他益处,包括降低的铁氧体质量,过滤器件要求和电磁场排放。原型系统的实验结果在对齐和错位的配置中呈现。系统被证明50&x00a0; kw,带95&x0025;在对齐情况下,在150 mm气隙上的DC-DC效率。在每个垫的基础上,磁耦合器实现195×100a0的功率密度; kW / m和3.65 kW / kg的特定功率。本文伴随着模拟三相WPT系统产生的旋转磁场的视频。

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