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基于小型化頻率選擇表面的輻散一體化低散射天線(xiàn)
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中國電子科技集團公司第五十四研究所

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Miniaturized Frequency-Selective Surface-Based Integrated Radiation-Scattering Low-Scattering Antenna
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    摘要:

    針對低散射微帶天線(xiàn)在散射性能和輻射性能之間不易平衡的問(wèn)題進(jìn)行了研究,設計了一種基于小型化頻率選擇表面的輻射散射一體化微帶天線(xiàn);采用彎曲頻率選擇表面單元支臂,增加頻率選擇表面臂等效長(cháng)度的方法,使頻率選擇表面的尺寸結構小型化;通過(guò)優(yōu)化尖劈狀頻率選擇表面天線(xiàn)罩與微帶天線(xiàn)之間的參數,增強了微帶天線(xiàn)在工作頻帶內的輻射性能,縮減了微帶天線(xiàn)在寬頻帶內的雷達散射截面;計算結果表明,頻率選擇表面與原結構相比尺寸減小了18.5%。實(shí)現了與原天線(xiàn)相比輻散一體化天線(xiàn)輻射增益增加了0.26 dB,在1-18 GHz的頻率范圍內雷達散射截面積均值為-28 dB。

    Abstract:

    Research has been conducted on the problem that it is not easy to balance the scattering performance and radiation performance of low-scattering microstrip antennas. A radiation-scattering integrated microstrip antenna based on miniaturized frequency selective surfaces was designed. The method of adopting the bent arm of the frequency selective surface unit to increase the equivalent length of the frequency selective surface arm was used to miniaturize the size and structure of the frequency selective surface. By optimizing the parameters between the wedge-shaped frequency selective surface radome and the microstrip antenna, the radiation performance of the microstrip antenna within the operating frequency band was enhanced, and the radar cross-section of the microstrip antenna in the wide frequency band was reduced. The calculation results show that the size of the frequency selective surface was reduced by 18.5% compared with the original structure. It was achieved that compared with the original antenna, the radiation gain of the radiation-scattering integrated antenna increased by 0.26 dB, and the average radar cross-section within the frequency range of 1 - 18 GHz was -28 dB.

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  • 收稿日期:2024-11-11
  • 最后修改日期:2024-12-18
  • 錄用日期:2024-12-19
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