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首页> 外文期刊>Mechatronics, IEEE/ASME Transactions on >An Active Pointing Compensator for Large Beam Waveguide Antenna Under Wind Disturbance
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An Active Pointing Compensator for Large Beam Waveguide Antenna Under Wind Disturbance

机译:风干扰下大波束波导天线的有源指向补偿器

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With increasing interest in the application of large beam waveguide antenna operated at high frequencies, the requirement for pointing accuracy becomes more demanding. Owing to wind disturbance inevitably causing certain reflector surface distortions which lead to a pointing error, the overall antenna performance decreases. To decrease the pointing deviation, this study analyzes the pointing error caused by the structural deformation under wind disturbance and proposes a novel real-time pointing error correction system (RPECS) by designing the configuration of an active control beam waveguide with a real-time position adjustable plate mirror (APM). Through inverse displacement analysis, the pointing errors resulting from reflector surface distortions are compensated through properly adjusting the position of the APM. A displacement amplification factor is designed to ensure that the displacement of the APM should fall within the driving stroke range. Using a 65-m S/X band antenna, the simulation results show that the root-mean-square pointing error with RPECS is reduced by 92.6% compared with the traditional control method, the gain loss is only about 0.04 dB after compensation.
机译:随着人们对在高频下工作的大波束波导天线的兴趣日益浓厚,对指向精度的要求也越来越高。由于风的干扰,不可避免地导致某些反射器表面变形,从而导致指向误差,天线的整体性能下降。为了减小指向偏差,本研究分析了风扰动下结构变形引起的指向误差,并通过设计具有实时位置的主动控制波束波导的配置,提出了一种新颖的实时指向误差校正系统(RPECS)。可调平板镜(APM)。通过反位移分析,可以通过适当调整APM的位置来补偿由反射器表面变形引起的指向误差。排量放大系数的设计可确保APM的排量应在驾驶行程范围内。仿真结果表明,使用65m S / X波段天线,与传统的控制方法相比,RPECS的均方根指向误差减少了92.6%,补偿后的增益损耗仅为0.04 dB。

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