A Photonics-Assisted Radar Jamming System With Nonuniform Interrupted Sampling
作者:Qihui Zhou, Hao Lin, Xin Zheng, Zhuohang Zhang, Shuang Zheng, Minming Zhang, Senyu Zhang, Yongkang Ou, Mingtuan Lin · 发表于:IEEE Transactions on Aerospace and Electronic Systems · 年份:2025 · DOI:10.1109/taes.2025.3540834 · 被引用次数:7 · 研究领域:Advanced Optical Sensing Technologies、Advanced Photonic Communication Systems、Ocular and Laser Science Research
This article presents a photonics-assisted radar jamming system utilizing two cascaded Mach–Zehnder modulators, capable of performing two distinct jamming functions with a simple architecture. With 0°–180° phase modulation, the system effectively eliminates the central false target and significantly increases the number of false targets via composite jamming of comb spectrum modulation and phase modulation. With high-speedon–offmodulation, it provides jamming for ultrawideband radar systems with bandwidths of several gigahertz. In addition, nonuniform pulse trains are employed for interrupted sampling, disrupting the regular time and amplitude distribution patterns of false targets generated by traditional interrupted sampling repeater jamming, thereby reducing the likelihood of the jamming signals being detected and neutralized by radar. The experimental results demonstrate that two operating modes exhibit excellent jamming performance on 18 GHz linear frequency modulation signals with instantaneous bandwidths of 100 MHz and 4 GHz, respectively, closely matching the simulated results. The system's advantages of a simple architecture, wide operating bandwidth, and high flexibility make it well suited for modern electronic warfare.