Department of Electrical Engineering, Iran University of Science & Technology, Tehran 1684613114, Iran.
School of Advanced Technologies, Iran University of Science & Technology, Tehran 1684613114, Iran.
Sensors (Basel). 2022 Sep 20;22(19):7108. doi: 10.3390/s22197108.
This paper deals with the design and fabrication of an unpretentious (single-layer, without any lump element) broadband (97%, 11.3-32.3 GHz) radar cross-section reduction (RCSR) modulated surface (MS). The proposed structure uses sinusoidal modulation gap sizes between square patches within square unit cells to form a phase gradient that plays an effective role in improving the RCSR bandwidth. An MS with dimensions of 250 × 250 mm, consisting of 40 × 40 unit cells with a period of 6 mm printed on a RO4003C (lossy) substrate of ( being the wavelength at the lower frequency) thickness, has been prototyped. The MS has square patch (SP) unit cells with seven different gap sizes. A genetic algorithm (GA)-based fine-tuning has been implemented to further increase the performances of the structure. Measurements on it have been conducted considering both mono- and bi-static arrangements and for oblique incidences for both TM and TE polarization tests. A good agreement between simulation and measurement results proves the validity of the design criteria.
本文设计并制作了一种简单(单层,无任何块状元件)、宽带(97%,11.3-32.3GHz)雷达截面缩减(RCSR)调制表面(MS)。所提出的结构利用方贴片之间的正弦调制间隙大小来形成相位梯度,这在提高 RCSR 带宽方面发挥了有效作用。该 MS 的尺寸为 250×250mm,由 40×40 个单元组成,每个单元的周期为 6mm,在厚度为( 为较低频率的波长)的 RO4003C(有损耗)衬底上印刷而成。MS 采用具有七种不同间隙尺寸的方贴片(SP)单元。采用基于遗传算法(GA)的微调技术进一步提高了结构的性能。对其进行了单站和双站、TM 和 TE 极化测试的斜入射测量。模拟和测量结果之间的良好一致性证明了设计标准的有效性。