搜索

x

留言板

姓名
邮箱
手机号码
标题
留言内容
验证码

downloadPDF
引用本文:
Citation:

    石泰峡, 董丽娟, 陈永强, 刘艳红, 刘丽想, 石云龙

    Regulation of spatial fields in wireless power transfer with artificial magnetic conductor

    Shi Tai-Xia, Dong Li-Juan, Chen Yong-Qiang, Liu Yan-Hong, Liu Li-Xiang, Shi Yun-Long
    PDF
    HTML
    导出引用
    • 为了提高无线能量传输系统的传输效率, 将正六边形人工磁导体结构引入非共振双线圈无线能量传输系统中, 展开对空间场调控的研究. 研究结果发现, 在人工磁导体介入非共振双线圈无线能量传输系统后, 在发射线圈和接收线圈之间的电磁场发生了变化, 这是由于近磁场激发了人工磁导体的多个谐振模式, 同时人工磁导体屏蔽了磁场也对空间场的变化有所贡献. 空间场的变化实现了传输效率的提升, 在工作频率为27 MHz、传输距离为3 cm时, 实验验证传输效率提高了22%. 另外, 该系统中人工磁导体多个谐振模式的激发, 可以为无线能量传输系统提供多模式和可便捷调频的工作频率. 在实际应用中, 人工磁导体成本较低, 且易于实现.
      In order to improve the efficiency of wireless power transfer (WPT) system, the spatial fields are regulated on a two-non-resonant-coil WPT system by hexagon artificial magnetic conductors (AMC). In our configuration, the AMC is located by the side of the two-non-resonant-coil WPT system and close to the transmitter coil. The AMC structure consists of small hexagon copper patches periodically arranged on the dielectric substrate. Each patch is grounded by a via passing through its center hole. Chip capacitors are soldered in the gaps between the adjacent patches. We can design the working frequency of WPT system through the capacitance of these chip capacitors. The results show that the electromagnetic fields are changed between the transmitter coil and the receiver coil in WPT system due to the introducing of the AMC structure. There are two main reasons. First, many resonant modes are excited by near magnetic fields on the AMC structure. Second, near magnetic fields are shielded by the AMC structure. The variation of space electromagnetic field improves the transmission efficiency of WPT system. When the working frequency is 27 MHz and the transmission distance is 3 cm, the experiment verifies that the transmission efficiency increases by 22% in the WPT system with the AMC structure compared with the WPT system without the AMC structure. Simultaneously, the transmission efficiency is raised by 25% at different transmission distances. The simulation results are almost consistent with the experimental results. There is a little difference that the number of resonant modes is different between the simulation and the experiment due to the resistance loss of the chip capacitors in experiment. Therefore, we correct the simulation results under consideration of resistive loss. In addition, the excited multiple resonant modes can supply multiple and adjustable working frequencies in the WPT system with the AMC structure. In practical applications, AMC is low in cost and easy to implement.
          通信作者:董丽娟,donglijuan_2012@163.com
        • 基金项目:国家自然科学基金 (批准号: 51607119, 11874245, 11604186)和山西省微结构功能科技创新团队项目(批准号: 201805D131006)资助的课题
          Corresponding author:Dong Li-Juan,donglijuan_2012@163.com
        • Funds:Project supported by the National Natural Science Foundation of China (Grant Nos. 51607119, 11874245, 11604186) and the Shanxi Science and Technology Innovation Team of Microstructural Functional Materials, China (Grant No. 201805D131006)
        [1]

        [2]

        [3]

        [4]

        [5]

        [6]

        [7]

        [8]

        [9]

        [10]

        [11]

        [12]

        [13]

        [14]

        [15]

        [16]

        [17]

        [18]

        [19]

        [20]

        [21]

        [22]

        [23]

        [24]

        [25]

        [26]

      • [1]

        [2]

        [3]

        [4]

        [5]

        [6]

        [7]

        [8]

        [9]

        [10]

        [11]

        [12]

        [13]

        [14]

        [15]

        [16]

        [17]

        [18]

        [19]

        [20]

        [21]

        [22]

        [23]

        [24]

        [25]

        [26]

      计量
      • 文章访问数:8197
      • PDF下载量:68
      • 被引次数:0
      出版历程
      • 收稿日期:2019-06-02
      • 修回日期:2019-08-07
      • 上网日期:2019-11-01
      • 刊出日期:2019-11-05

        返回文章
        返回