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Study of Azimuth and Elevation Digital Beamforming for sub-1 GHz VHF Communication with Simple Vibrator Antennas

机译:与简单振动天线的子1 GHz VHF通信的方位角和高程数字波束形成研究

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摘要

In the paper the problem of using digital antenna arrays equipped with dipole and directive elements simultaneously in the azimuth and elevation planes is discussed. In particular, they are investigated for communication channels of the VHF range below 1 GHz. This range is characterized by the fact that it has found wide distribution. However, its application is fraught with many difficulties, such as attenuation, reflection from rough surfaces, etc. One of the solutions to these problems can be azimuth-elevation digital beamforming. The paper presents the simulation results for the propagation of signals in the VHF range in free space, taking into account the noise characteristic of these frequencies. It is assumed that a symmetrical dipole is used on the transmitting side, and a directional Yagi antenna on the receiving digital antenna array (DAA) also equipped with a dipole. The circular (CAA) and hemi-dodecahedron shapes of the arrangement of elements of the receiving digital antenna array are simulated. The bit error rates (BER) depending on the distance between the transmitter and the receiver are estimated.
机译:在论文中,讨论了使用配备有偶极子和指示元件的数字天线阵列的问题,并在方位角和高度平面中进行指示元件。特别地,他们被调查用于VHF范围低于1GHz的通信信道。该范围的特点是它发现广泛的分布。然而,其应用充满了许多困难,例如衰减,粗糙表面的反射等。这些问题的一个解决方案可以是方位角 - 高度数字波束形成。本文介绍了在自由空间中VHF范围内的信号传播的仿真结果,考虑了这些频率的噪声特性。假设在透射侧使用对称偶极子,并且接收数字天线阵列(DAA)上的定向yagi天线也配备有偶极子。模拟接收数字天线阵列的元件的布置的圆形(CAA)和半道形化形状。估计取决于发送器和接收器之间的距离的误码率(BER)。

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