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    主反射面形面不确定性对天线电性能的影响机理

    Influence Mechanism of Main Reflecting Surface Shape Uncertainty on Electrical Performance of Antennas

    • 摘要: 随着反射面天线不断向高频段、高增益、高性能的方向发展,其结构和电磁不确定性对天线增益和指向精度等电性能的遏制作用也愈发明显,大大限制了反射面天线探测范围与指向精度等性能的提升。文中以反射面天线为对象,建立了反射面天线结构不确定性机电耦合模型,基于区间分析方法给出了主反射面形面不确定性下的方向图表达式。通过110 m天线设计模型算例,讨论了馈源和主反射面不确定性对天线增益、指向等性能的影响机理。结果表明:馈源位置不确定性对天线副瓣电平和增益损失的影响比馈源指向不确定性的影响大;与外环面板相比,主反射面内环面板形面不确定性对电性能的影响更大。

       

      Abstract: As reflector antennas continue to evolve towards higher gain and performance in the high-frequency range, the constraints posed by their structure and electromagnetic uncertainty on electrical properties like antenna gain and pointing accuracy are becoming increasingly evident, which significantly restricts the enhancement of reflector antennas' detection range and pointing accuracy. In this paper reflector antennas are taken as the object, an electromechanical coupling model is established for the structural uncertainty of reflector antennas. Based on interval analysis method, the directional pattern expression under the uncertainty of the main reflection surface shape is provided. Finally, the influence mechanism of feed source and main reflector uncertainty on antenna gain, pointing direction and other performance is discussed through an example of a 110 m antenna design model. The results show that the uncertainty of the feed source position has a greater impact on the sidelobe level and gain loss of the antenna than the uncertainty of the feed source pointing direction. The uncertainty of the inner ring panel shape of the main reflector has a greater impact on the electrical performance than that of the outer ring panel.

       

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