Wang Dengpan, Zhuang Yaqiang, Shen Lian, Meng Xiangyang, Wang Guangming, Tang Shiwei, Cai Tong
Opt Express. 2022 May 9;30(10):16009-16019. doi: 10.1364/OE.457510.
Stealth radome (SR), especially with an ultra-broad and nearly transparent window between two absorption bands, plays a crucial role in stealth techniques, antenna radomes, and so on. However, current devices have the defects of narrow transmission bands, high insertion loss, and wide transition bands between the transmission and absorption bands, which are unfavorable for the stealth of broadband radar and communication systems. In this paper, a novel SR with an ultra-broad and high-efficiency inter-absorption band transparent window is proposed by combining broadband resonance lumped circuits with a multi-layer cascaded frequency-selective surface (FSS). The equivalent circuit model (ECM) and transmission line method (TLM) are provided and analyzed as a guideline for the SR design. The SR consists of a resistive lossy layer loaded with wide passband lumped circuits and two stacked lossless FSS layers to collectively achieve the high selectivity and ultra-broad transmission band. Simulated results indicate that the proposed SR exhibits an ultra-broad passband from 8.2 to 11.2 GHz (31%) with transmission amplitude more than 0.85 and two 90% absorption bands over 6.8-7.8 GHz and 12-13 GHz, and the transition bands at both sides are only 0.4 GHz and 0.8 GHz, respectively. Our findings can stimulate the promising applications of SR in broadband stealth devices with integrated ultra-broad communication capability or in other electromagnetic (EM) compatibility facilities.
隐身天线罩(SR),尤其是在两个吸收频段之间具有超宽且近乎透明窗口的隐身天线罩,在隐身技术、天线罩等方面起着至关重要的作用。然而,当前的器件存在传输带宽窄、插入损耗高以及传输频段和吸收频段之间过渡带宽等缺陷,这对宽带雷达和通信系统的隐身不利。本文通过将宽带谐振集总电路与多层级联频率选择表面(FSS)相结合,提出了一种具有超宽高效吸收带间透明窗口的新型隐身天线罩。提供并分析了等效电路模型(ECM)和传输线方法(TLM),作为隐身天线罩设计的指导。该隐身天线罩由加载宽带通带集总电路的电阻损耗层和两个堆叠的无损FSS层组成,共同实现高选择性和超宽传输频段。仿真结果表明,所提出的隐身天线罩在8.2至11.2 GHz(31%)范围内呈现超宽通带,传输幅度大于0.85,在6.8 - 7.8 GHz和12 - 13 GHz范围内有两个90%吸收频段,两侧的过渡频段分别仅为0.4 GHz和0.8 GHz。我们的研究结果可推动隐身天线罩在具有集成超宽通信能力的宽带隐身器件或其他电磁(EM)兼容设施中的应用前景。