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首页> 外文期刊>IEEE Transactions on Electromagnetic Compatibility >Low EMF and EMI Design of a Tightly Coupled Handheld Resonant Magnetic Field (HH-RMF) Charger for Automotive Battery Charging
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Low EMF and EMI Design of a Tightly Coupled Handheld Resonant Magnetic Field (HH-RMF) Charger for Automotive Battery Charging

机译:用于汽车电池充电的紧密耦合手持式谐振磁场(HH-RMF)充电器的低EMF和EMI设计

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摘要

Wireless power transfer (WPT) technology is an electrically safe and convenient method of charging batteries. WPT technology allows elimination of exposed contacts, which can cause direct electrocution of human. In spite of the great advantages, the WPT system inevitably generates strong electromagnetic fields (EMFs), causing interference on the nearby electrical devices as well as harmful influence on human health. Therefore, it is important to satisfy EMF guidelines and reduce leakage magnetic field harmonics in WPT system. For the first time, in this paper, we propose a new tightly coupled handheld resonant magnetic field (HH-RMF) charger operating at 20 kHz with low EMF and high efficiency. Using a guided magnetic flux in resonance structure, 64.5 mG of EMF is reduced compared to the conventional inductive charger at a distance of 200 mm from edge of the core. In addition to the electromagnetic interference (EMI) reduction, the isolation inductor scheme is proposed as an EMI reduction method. Through a series of measurements, we experimentally verified that the proposed HH-RMF charger complies with the regulations published by the International Commission on Non-Ionizing Radiation Protection in 1998. The proposed HH-RMF charger with the isolation inductor scheme successfully reduces the third harmonic of the Tx and Rx currents by 23.4 and 11.8 dBμA, respectively. Furthermore, the third and fifth magnetic field harmonics reduce by 1.38 and 0.67 mG, respectively. The coil-to-coil power transfer efficiency and total system power transfer efficiency of the proposed structure are maintained at over 98% and 84%, respectively.
机译:无线电源传输(WPT)技术是一种电气安全且方便的电池充电方法。 WPT技术可以消除裸露的触点,而裸露的触点可能导致人直接电死。尽管WPT系统具有很大的优势,但它不可避免地会产生强电磁场(EMF),从而对附近的电子设备产生干扰,并对人体健康产生有害影响。因此,重要的是要满足EMF准则并减少WPT系统中的泄漏磁场谐波。在本文中,我们首次提出了一种新的紧密耦合手持式谐振磁场(HH-RMF)充电器,该充电器以20 kHz的频率运行,具有低EMF和高效率。在共振结构中使用引导磁通量,与传统感应式充电器相比,在距铁芯边缘200 mm的距离处可减少64.5 mG​​的EMF。除了降低电磁干扰(EMI)之外,还提出了隔离电感器方案作为EMI降低方法。通过一系列测量,我们通过实验验证了所提出的HH-RMF充电器符合国际非电离辐射防护委员会在1998年发布的法规。提出的具有隔离电感器方案的HH-RMF充电器成功降低了三次谐波Tx和Rx电流分别降低了23.4和11.8dBμA。此外,第三和第五磁场谐波分别减小了1.38和0.67 mG。提出的结构的线圈到线圈的功率传递效率和整个系统的功率传递效率分别保持在98%和84%以上。

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