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Study on the theory and method of vortex-electromagnetic-wave-based radar imaging

机译:基于涡旋电磁波的雷达成像理论与方法研究

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摘要

Helical phase fronts and orbital angular momentum of the vortex electromagnetic (EM) wave are applied to radar imaging at microwave frequencies and comprehensive simulations are conducted. Results demonstrate that an incrementally phased uniform circular array can be exploited to generate vortex EM wave at microwave frequencies. The imaging model based on the linear frequency modulation signal is established and the pulse-compression and fast Fourier transform methods are used to image the target in both range and azimuth dimensions. Furthermore, antenna pattern optimisation methods for imaging are studied to enhance the directivity of the emitting signal. The work can promote the significant development of novel information-rich radar imaging technology and provide staring imaging with substantial technical supports.
机译:将涡旋电磁(EM)波的螺旋相位前锋和轨道角动量应用于微波频率的雷达成像,并进行了全面的仿真。结果表明,可以利用增量相变均匀圆形阵列在微波频率下产生涡旋电磁波。建立了基于线性调频信号的成像模型,并采用脉冲压缩和快速傅立叶变换方法对目标进行了范围和方位方向的成像。此外,研究了用于成像的天线方向图优化方法,以增强发射信号的方向性。这项工作可以促进信息丰富的新型雷达成像技术的重大发展,并为凝​​视成像提供实质性的技术支持。

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