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Flange Angle Design for Waveguide-Based Orbital Angular Momentum Multiplexing Communication Systems

机译:基于波导的轨道角动量复用通信系统的法兰角设计

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Orbital angular momentum (OAM) based communication systems utilize the orthogonality of OAM states to multiplex communication channels. A potentially efficient OAM based communication system may employ flanged circular cylindrical waveguides for transmission, given the natural OAM states of the waveguide modes. The electromagnetic field launched by a propagating waveguide mode propagates a vortex beam with an amplitude null along its propagation axis. Receivers optimally should be placed along the direction of the radiation main lobe of the launcher. In this work, we study the relationship between the flange angle of the launcher and the angle of maximum gain in the main lobe of the radiation for four different OAM states. We demonstrate that OAM may have a significant effect on the sensitivity of the angle of maximum gain to variation in the flange angle. The presented results are confirmed using full-wave simulation.
机译:基于轨道角动量(OAM)的通信系统利用OAM状态的正交性来复用通信信道。给定波导模式的自然OAM状态,基于潜在OAM的高效通信系统可以采用带法兰的圆柱形波导进行传输。由传播波导模式发射的电磁场沿其传播轴传播振幅为零的涡旋束。接收器最好沿着发射器辐射主瓣的方向放置。在这项工作中,我们研究了四种不同OAM状态下发射器的法兰角与辐射主瓣最大增益角之间的关系。我们证明,OAM可能会对最大增益角对翼缘角变化的敏感度产生重大影响。所提供的结果已通过全波仿真得到了证实。

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