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Multioctave and reconfigurable frequency-stepped radar waveform generation based on an optical frequency shifting loop

机译:基于光学频率移位环的多电流和可重构的频率阶梯式雷达波形发电

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摘要

A photonic method for multioctave and reconfigurable frequency-stepped radar waveform generation is proposed and experimentally demonstrated based on an optical frequency shifting loop (OFSL). When a rectangular optical pulse is applied to the OFSL, a frequency-stepped optical signal can be generated. Beating the signal with another continuous-wave optical carrier, an electrical frequency-stepped waveform can be obtained. By meticulously adjusting the relations between the time duration of the rectangular optical pulse and the loop delay of the OFSL, the frequency-hopping rate (or the frequency-hopping period) of the generated frequency-stepped signal can be reconfigured. An experiment is carried out. The generation of frequency-stepped signals with frequency intervals of 1 GHz, 3 GHz, 5 GHz, 8 GHz, and 10 GHz is realized. The reconfigttrability of the frequency-hopping period is also investigated and different frequency-hopping periods of 189, 10.2, 5.1, and 2.42 ns are achieved. (C) 2020 Optical Society of America
机译:提出了一种基于光学频率移位环(OFSL)进行多进度和可重构频率阶梯式雷达波形生成的光子方法。当矩形光学脉冲施加到OFSL时,可以产生频率阶梯式光信号。用另一个连续波光学载波跳动信号,可以获得电频率阶梯式波形。通过精细地调整矩形光脉冲的持续时间与OFSL的循环延迟之间的关系,可以重新配置所产生的频率阶跃信号的跳频率(或跳频周期)。进行实验。实现了具有1 GHz,3 GHz,5 GHz,8 GHz和10 GHz的频率间隔的频率间隔的产生。还研究了跳频周期的重新配置,并且实现了189,10.2,5.1和2.42ns的不同频率跳跃周期。 (c)2020美国光学学会

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