概括
这项研究引入了具有四方弧结构的集成超表面天线,使得高收益辐射和复杂散射成为可能. 该设计实现了多束和束功能,并显著减少了雷达横截面.
科学领域:
- 电磁超表面电磁超表面表面
- 天线工程天线工程
- 应用电磁学 应用电磁学
背景情况:
- 超表面为先进的天线设计提供独特的电磁特性.
- 在单个天线中同时实现高收益辐射和复杂的散射功能是具有挑战性的.
- 控制辐射模式和散射特征需要复杂的相位和振幅操纵.
研究的目的:
- 设计和演示一个集成的超表面天线,结合辐射和散射功能.
- 为了实现高收益的多束辐射和受控的旋转束散射.
- 实现宽带雷达横截面的减少,使用拟议的超表面天线.
主要方法:
- 集成一个中央辐射补丁与四方弧形 (QAS) 结构.
- 用于辐射控制的功率分割输送网络的相位操纵.
- 调整QAS弧用于X极化散射调制.
- 设计和模拟两个不同的地表天线配置.
- 优化使用模拟化基因算法进行散射函数的优化.
主要成果:
- 使用棋盘输送网络实现了四束辐射,每束增加16dBi.
- 证明了使用3位编码的束散射.
- 获得了一个偏移光束辐射图案,具有22.3 dBi的增益.
- 从8-24 GHz实现了宽带雷达截面的减少.
结论:
- 拟议的集成超表面天线有效地实现了同时高收益辐射和复杂散射.
- 设计灵活性允许不同的功能,包括多束辐射,束散射和RCS减少.
- 制造和测量验证了设计的性能和用于先进电磁应用的潜力.
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