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Beam Steering of OAM Beams Using Time-switched Circular Patch Antenna Arrays

机译:OAM波束的时控圆形切换天线阵列的波束控制

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In this paper, time switched circular patch arrays are proposed to steer orbit angular moment (OAM) beams. OAM has been widely discussed as a new dimension to provide many channels for radio communications. One of the open issues is to steer and form the beam at lower cost. This paper introduces simple RF switch-controlled patch antennas to control the beams of OAM. Altering the signals loaded onto switches, a rotating phase profile can be added to the circular array and generate the OAM beam. Furthermore, the system can steer OAM beams by transform the beamsteering phase delay to time delays. Theoretical model of OAM beam steering based on the proposed practical 3.5 GHz arrays are produced along with numerical and full-wave simulations. Results suggest that the time-switched method is not only effective on theoretical isotropic elements but also realistic patch arrays, with advantages such as low cost and complexity.
机译:在本文中,提出了时间切换圆形斑块阵列来操纵轨道角矩(OAM)光束。 OAM已被广泛讨论为提供许多用于无线电通信的信道的新维度。开放的问题之一是以较低的成本操纵和形成光束。本文介绍了简单的RF开关控制的贴片天线,以控制OAM的波束。改变加载到开关上的信号,可以将旋转相位配置文件添加到圆形阵列并生成OAM光束。此外,该系统可以通过将波束控制相位延迟转换为时间延迟来控制OAM波束。基于数值模拟和全波模拟,建立了基于所提出的实用的3​​.5 GHz阵列的OAM光束转向的理论模型。结果表明,时间切换方法不仅对理论各向同性元件有效,而且对现实的贴片阵列均有效,且具有成本低,复杂度高等优点。

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