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The design of array antenna based on multi-modal OAM vortex electromagnetic wave

机译:基于多模态OAM涡旋电磁波的阵列天线设计

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The research on orbital angular momentum (OAM) grows into a hot topic in electromagnetic and wireless communication field owing to its higher spectrum efficiency compared with the conventional multiplexing technology. This paper proposes a new way that the technology of OAM and circular polarization are combined into the design of array antenna. Eight circular polarized corner cutting micro-strip patch antenna elements are arranged equidistantly along the circumference to form a novel multi-modal OAM micro-strip array antenna which can generate electromagnetic waves with dual characteristics of circular polarization and multi-modal vortex OAM (where OAM modes are l = 0, l = ±1, l = ±2, l = ±3). This array antenna works at 2.45 GHz frequency band, which is suitable for the most popular traditional Wi-Fi, ZigBee and Bluetooth communication. Finally, the development prospects of multi-modal OAM vortex electromagnetic array antenna in microwave and millimeter wave band are forecasted.
机译:与传统的多路复用技术相比,轨道角动量(OAM)的频谱效率更高,因此成为电磁和无线通信领域的热门话题。本文提出了一种将OAM技术和圆极化技术结合到阵列天线设计中的新方法。沿圆周等距排列八个八个圆极化角切角微带贴片天线元件,以形成新颖的多模态OAM微带阵列天线,该天线可以产生具有圆极化和多模涡旋OAM双重特征的电磁波(其中OAM模式为l = 0,l =±1,l =±2,l =±3)。该阵列天线工作于2.45 GHz频带,适用于最流行的传统Wi-Fi,ZigBee和蓝牙通信。最后,展望了微波和毫米波波段多模态OAM涡旋电磁阵列天线的发展前景。

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