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Microwave Vortex Imaging Based on Dual Coupled OAM Beams

机译:基于双耦合OAM光束的微波涡流成像

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This paper investigates electromagnetic (EM) vortex imaging based on dual coupled orbital angular momentum (OAM) beams. An OAM-generating scheme is proposed to generate radio waves carrying various dual coupled OAM at the X-frequency band and the experimental results of radar imaging in an anechoic chamber are illustrated for the first time. The uniform circular array (UCA) is exploited to generate dual coupled OAM beams and the radiated fields are presented by both theoretical analysis and full-wave EM simulation. Subsequently, the mathematical imaging model is established and the target reconstruction method is proposed. The relative imaging error (RIE) is introduce to evaluate the imaging performance. The imaging results indicate that the proposed method can have a better performance than EM vortex imaging without OAM-multiplexing and save half time of OAM beams transmitting. Moreover, the imaging experimental results in the anechoic chamber validate the effectiveness of the proposed method. This paper applies OAM-multiplexing beams to radar imaging and improves the vortex imaging efficiency, which can benefit the applications of OAM beams and the design of OAM-based radar systems.
机译:本文研究了基于双耦合轨道角动量(OAM)梁的电磁(EM)涡流成像。提出了一种OAM-生成方案,以产生在X频带处携带各种双耦合OAM的无线电波,并且首次示出了在透明室中的雷达成像的实验结果。利用均匀的圆形阵列(UCA)以产生双耦合OAM光束,并且通过理论分析和全波EM仿真来呈现辐射的场。随后,建立了数学成像模型,提出了目标重建方法。介绍相对成像误差(RIE)以评估成像性能。成像结果表明该方法可以具有比没有OAM多路复用的EM涡流成像更好的性能,并节省OAM光束的半次发送。此外,AneChice室的成像实验结果验证了所提出的方法的有效性。本文应用OAM复用光束以雷达成像,提高了涡流成像效率,其可以受益OAM束的应用程序和基于OAM雷达系统的设计。

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