1. 空军工程大学,西安,710051
2. 苏州实验室,苏州,215004
纸质出版:2025
移动端阅览
李铁夫, 楚遵天, 韩亚娟, 等. 超表面电磁增透技术研究进展[J]. 航空制造技术, 2025,68(15).
LI Tiefu, CHU Zuntian, HAN Yajuan, et al. Research Progress of Metasurface–Electromagnetic–Anti–Reflection Technologies[J]. Aeronautical Manufacturing Technology, 2025, 68(15).
李铁夫, 楚遵天, 韩亚娟, 等. 超表面电磁增透技术研究进展[J]. 航空制造技术, 2025,68(15). DOI: 10.16080/j.issn1671-833x.2025.15.063.
LI Tiefu, CHU Zuntian, HAN Yajuan, et al. Research Progress of Metasurface–Electromagnetic–Anti–Reflection Technologies[J]. Aeronautical Manufacturing Technology, 2025, 68(15). DOI: 10.16080/j.issn1671-833x.2025.15.063.
相控阵雷达等有源射频系统的辐射/ 接收前端往往需要装配天线罩或电磁窗,作为典型的结构–功能一体化器件,一方面要保护系统内部结构不受外界环境侵害;另一方面要确保在工作频段电磁波能够高效透过,从而保证射频系统正常工作。由于需要足够的刚度和强度,天线罩和电磁窗的介电常数一般较大,易造成透波性能下降和插入相移增大等问题。因此在传统技术逐渐难以满足实际应用需求的背景下,亟须探索基于新机理的电磁波透射率增强技术(简称电磁增透技术),在工作带宽和角域等方面提升传统材料的透波性能。超表面作为二维形式的超材料,具有多维度的电磁调控能力,且在几何属性上符合当今电磁设备的主要发展趋势,对于电磁增透技术具有重要应用价值。本文系统介绍了超表面电磁增透技术研究进展,首先扼要回顾了典型的传统电磁增透技术,后重点介绍了超表面电磁增透机理、设计思想和具体设计架构,并分析了各类电磁增透超表面的特点,最后对电磁增透技术领域亟须解决的关键问题及发展趋势进行了总结和展望。
The radiation/receiving front end of active radio frequency (RF) systems such as phased array radars often needs to be equipped with the radome or electromagnetic (EM) window. As the typical structure-function integrated device
it protects systems’ internal structure from the external environment
and ensures EM waves can efficiently transmit in the working frequency band to ensure RF systems normally operate. Due to the need of sufficient stiffness and strength
the permittivity of radomes and EM windows is generally large
which is easy to reduce the wave-transparent performance and increase the insertion phase shift. Therefore
under the background that traditional technologies are gradually difficult to meet practical applications
it is urgent to explore EM anti-reflection (AR) technologies based on the new mechanism to improve the wave-transparent performance of traditional materials in the working bandwidth and angular domain. As two-dimensional metamaterials
metasurfaces have the ability of multi-dimensional EM regulation and conform to EM equipments’ mainstream development trend in geometric properties
which have important application value for EM AR technologies. This paper systematically introduces the research progress of metasurface EM AR technologies
first briefly reviews the typical traditional EM AR technologies
then mainly introduces the mechanism
design ideas and specific design architecture of metasurface EM AR technologies
and analyzes the characteristics of various EM AR metasurfaces
and finally summarizes and prospects the key problems and development trends in the field of EM AR technologies.
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