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储能系统技术 储能系统 有限元仿真 ★ 4.0

一种低电场暴露的完全对称平面螺旋接收线圈设计与优化

Design and Optimization of a Perfectly Symmetric Planar Spiral Receiving Coil With Low E-Field Exposure for Large-Space WPT

作者 Tong Li · Siqi Li · Zhe Liu · Sizhao Lu · Yilin Qiao · Jinglin Xia
期刊 IEEE Journal of Emerging and Selected Topics in Power Electronics
出版日期 2024年10月
技术分类 储能系统技术
技术标签 储能系统 有限元仿真
相关度评分 ★★★★ 4.0 / 5.0
关键词 平面螺旋接收线圈 无线电力传输 电场暴露 有限元模拟 功率传输效率
语言:

中文摘要

本文提出一种用于大空间无线电力传输系统的完全对称平面螺旋接收线圈(PS-coil),旨在显著降低电场(E-field)暴露。该线圈采用多股对称绕制的螺旋导线取代传统单导线结构,实现分布式精确电容补偿,有效抑制寄生电容及其引发的E-field辐射。PS-coil在保持磁场(H-field)分布的同时,大幅削弱E-field强度,使功率接收在ICNIRP 2020限值内最大化。有限元仿真表明,在6 A有效电流下,1 cm距离处局部比吸收率(SAR)仅为0.72 W/kg,较传统设计降低80%,远低于2 W/kg限值。实验样机(尺寸类比iPad)实测电感与计算值误差小于2%,自谐振频率提升38%。在直径3 m、高2.4 m的空间中,可实现200 W以上功率传输,效率达54.8%,且E-field暴露降低18.9 dB。

English Abstract

This article introduces a perfectly symmetrical planar spiral receiving coil (PS-coil) for large-space wireless power transfer (WPT) systems, designed to significantly reduce electric field (E-field) exposure. The coil’s structure utilizes multiple symmetrically wound spiral wires, replacing traditional single-wire coils. This symmetry facilitates distributed and precise capacitor compensation, effectively mitigating the effects of parasitic capacitance and associated E-field exposure. The PS-coil preserves the magnetic field (H-field) distribution while significantly reducing E-field emissions, allowing for greater power reception within the limits set by the International Commission on Non-Ionizing Radiation Protection guidelines (ICNIRP 2020). Finite element simulations indicate that at an effective current of 6 A, the PS-coil achieves a local specific absorption rate (SAR) of 0.72 W/kg at a 1 cm distance—80% lower than traditional designs and well below the 2 W/kg guideline. Finally, a prototype model, comparable in size to an iPad, confirms that the calculated inductance is within 2% of the measured values, with a self-resonance frequency 38% higher than that of traditional coils. Tests in a large space, 3 m in diameter and 2.4 m high demonstrate that the PS-coil can transmit over 200 W with 54.8% efficiency. Additionally, comparisons of traditional coils with the proposed PS-coil under the same conditions indicated an 18.9 dB reduction in E-field exposure.
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SunView 深度解读

该低电场暴露无线电力传输技术对阳光电源新能源汽车充电产品线具有重要应用价值。PS-coil的完全对称螺旋结构与分布式电容补偿设计,可直接应用于无线充电桩系统,将SAR降低80%至0.72 W/kg,满足ICNIRP 2020人体安全标准。其200W功率传输能力和54.8%效率,适配小功率移动设备充电场景。对于阳光电源储能系统的无线监测模块供电、光伏运维设备的无接触充电方案具有启发意义。该技术的有限元仿真优化方法可借鉴至SiC/GaN功率器件的电磁兼容设计,提升ST系列储能变流器的EMI性能。自谐振频率提升38%的设计思路,对高频化功率变换器的寄生参数抑制有参考价值。