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Diverse waveform generation using semiconductor lasers for radar and microwave applications

机译:使用半导体激光器在雷达和微波应用中产生多种波形

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The possibility of using semiconductor lasers to conveniently generate diverse microwave waveforms for radar and microwave applications is studied both numerically and experimentally. Such waveforms are generated from the dynamical states of semiconductor lasers in different perturbation schemes and varying operating conditions. Using an optical injection scheme, broad-band chaotic microwave waveforms and tunable narrow-band harmonic microwaves over a broad frequency range can be generated. Using an optoelectronic feedback scheme, chaotic pulsing, regular pulsing, frequency-locked pulsing, and quasi-periodic pulsing waveforms are generated. These optically generated microwave waveforms can be easily amplified and radiated out using microwave amplifiers and antennas. The power spectra, time series, and autocorrelation traces of such waveforms are studied. The peak-sidelobe level is calculated to quantitatively compare the correlation characteristics of these waveforms. A broad-band chaotic waveform with a clean single-spike Δ-function-like correlation profile useful for radar and other applications that demand unambiguous correlation profile is demonstrated experimentally.
机译:数值和实验研究了使用半导体激光器方便地产生用于雷达和微波应用的各种微波波形的可能性。从半导体激光器在不同的摄动方案和变化的工作条件下的动态状态产生这样的波形。使用光注入方案,可以生成宽频率范围内的宽带混沌微波波形和可调谐的窄带谐波微波。使用光电反馈方案,可以生成混沌脉冲,规则脉冲,锁频脉冲和准周期脉冲波形。这些光学产生的微波波形可以使用微波放大器和天线轻松放大和辐射。研究了此类波形的功率谱,时间序列和自相关曲线。计算峰旁瓣电平以定量比较这些波形的相关特性。实验证明了宽带混沌波形,其具有干净的单尖峰Δ函数状相关曲线,可用于雷达和其他要求明确相关曲线的应用。

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