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Chaotic radar using nonlinear laser dynamics

机译:利用非线性激光动力学的混沌雷达

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摘要

A novel chaotic radar (CRADAR) system utilizing laser chaos is investigated both numerically and experimentally. Compared with conventional radars, the proposed CRADAR has the advantages of very-high-range resolution, unambiguous correlation profile, possibility of secure detection, low probability of intercept, and high electromagnetic compatibility. Generated by an optically injected semiconductor laser, chaotic waveforms with bandwidths larger than 10 GHz can be readily obtained. In this paper, the time series, the phase portraits, and the power spectra of the chaotic states are presented. The correlation traces between the signal and the reference waveforms are plotted. The peak sidelobe level with different correlation lengths is investigated. The capability of anti-jamming and the performance under additive white Gaussian noise are studied. To show the feasibility of CRADAR, proof-of-concept experiments using a pair of planar antennas with a 1.5-GHz bandwidth covering the range from 1.5 to 3 GHz are demonstrated. A range resolution of 9 cm is achieved, which is currently limited not by the bandwidth of the chaotic states but by the detection bandwidths of the real-time oscilloscope and the antennas used.
机译:数值和实验研究了一种利用激光混沌的新型混沌雷达(CRADAR)系统。与常规雷达相比,所提出的CRADAR具有很高的范围分辨率,明确的相关性,安全检测的可能性,拦截的可能性低以及电磁兼容性高的优点。通过光注入半导体激光器产生的信号,可以轻易获得带宽大于10 GHz的混沌波形。本文给出了混沌状态的时间序列,相图和功率谱。绘制了信号波形与参考波形之间的相关曲线。研究了具有不同相关长度的峰值旁瓣电平。研究了抗干扰能力和加性高斯白噪声下的性能。为了显示CRADAR的可行性,演示了使用一对1.5 GHz带宽覆盖1.5至3 GHz范围的平面天线进行的概念验证实验。达到9 cm的距离分辨率,当前不限于混沌状态的带宽,而是受到实时示波器和所用天线的检测带宽的限制。

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