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首页> 外文期刊>IEEE Transactions on Magnetics >Miniature Hexaferrite Axial-Mode Helical Antenna for Unmanned Aerial Vehicle Applications
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Miniature Hexaferrite Axial-Mode Helical Antenna for Unmanned Aerial Vehicle Applications

机译:微型六方铁氧体轴向模式螺旋天线,用于无人机

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摘要

We demonstrated the size reduction of axial-mode helical antenna based on ${rm Co}_{2}{rm Z}$ hexaferrite-glass composite. Axial-mode helical antenna was employed to provide reliable communication for unmanned aerial vehicle (UAV) applications. The conventional axial-mode helical antenna uses an air core or low dielectric material, resulting in large antenna size. To increase the miniaturization factor $n=(mu_{rm r}varepsilon_{rm r})^{0.5}$, a ${rm Co}_{2}{rm Z}$ hexaferrite-glass composite was used as an antenna core. The 3-dimensional finite element method (FEM) simulation was performed to design a hexaferrite helical antenna and confirm the axial-mode operation at 2.44 GHz with gain of 2.0 dBi. The designed hexaferrite helical antenna showed 82% of volume reduction and good impedance matching compared to the air-core antenna. The axial-mode hexaferrite antenna was fabricated based on the designed structure and characterized in an anechoic chamber. The maximum gain of 0.541 dBi was measured with the pitch angle of 10$^{circ}$ at 2.39 GHz. Also, a two-element axial-mode antenna array was designed based on the miniature hexaferrite antenna to further improve antenna gain. Maximum gain of 4.5 dBi at 2.43 GHz was simulated for the antenna array. Therefore, high gain and miniature antenna can be achieved with the combination of ${rm Co}_{2}{rm Z}$ hexaferrite-glass composite and antenna design technology.
机译:我们演示了基于 $ {rm Co} _ {2} {rm Z} $ 的轴模螺旋天线的尺寸减小>六铁酸盐玻璃复合材料。轴向模式螺旋天线用于为无人机(UAV)应用提供可靠的通信。传统的轴向模式螺旋天线使用空心或低介电材料,导致天线尺寸较大。为了增加小型化因子 $ n =(mu_ {rm r} varepsilon_ {rm r})^ {0.5} $ ,六铁氧体玻璃复合材料用作天线芯,使用 $ {rm Co} _ {2} {rm Z} $ 六方铁氧体玻璃复合材料。进行了三维有限元方法(FEM)仿真,以设计一个六铁氧体螺旋形天线,并确认了在2.44 GHz处的轴向模式工作以及2.0 dBi的增益。与空心天线相比,设计的六铁氧体螺旋天线显示出82%的体积减小和良好的阻抗匹配。基于设计的结构制造了轴向模式六铁氧体天线,并在消声室内对其进行了表征。在2.39 GHz频率下,使用10 <公式>的俯仰角测得的最大增益为0.541 dBi。另外,在微型六铁氧体天线的基础上设计了一种二元轴向模式天线阵列,以进一步提高天线增益。模拟了天线阵列在2.43 GHz时4.5 dBi的最大增益。因此,结合使用 $ {rm Co} _ {2} {rm Z} $ 可以实现高增益和小型天线。配方>六方铁氧体玻璃复合材料和天线设计技术。

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