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Reconfigurable radar transmitter based on photonic microwave signal generation

机译:基于光子微波信号产生的可重构雷达发射机

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In this paper we propose a photonic technique for a reconfigurable microwave signal generation based on the beating in a photodiode of two laser modes from a regenerative Fiber Mode-Locked Laser (FMLL). The excellent performance of this kind of pulsed laser guarantees high stability to the generated microwave signal even at ultra high frequencies (up to W band). Therefore, by using the proposed architecture, the performance of a reconfigurable full digital coherent radar system can be enhanced in terms of Moving Target Indicator (MTI) improvement factor. Moreover, thanks to the achievable high repetition rates and the coherence properties of the FMLL, this laser scheme has also been proposed for digitizing the received signal by electro-optical sampling. Thus the advantage of using just one device for signal generation in both the transmitter and receiver chain, makes the proposed solution a cost effective architecture for microwave signal generation. Differently from the microwave synthesizers, whose performance strongly deteriorate with increasing frequencies, the photonic radio frequency generation always shows an excellent spectral purity. The results show excellent spectral purity above 5 KHz for the proposed technique compared to a state of the art Agilent synthesizer even though the timing jitter increases for integration time greater than 10 msec. In order to achieve the same stability performance at both high and low frequencies a Phase Locked Loop between the laser and a synthesizer could be used.
机译:在本文中,我们提出了一种光子技术,用于基于可再生光纤锁模激光器(FMLL)的两个激光模式在光电二极管中的跳动,从而产生可重构微波信号。这种脉冲激光的出色性能保证了即使在超高频(高达W波段)下,所产生的微波信号也具有很高的稳定性。因此,通过使用所提出的体系结构,就可移动目标指示器(MTI)的改善因素而言,可增强可重构全数字相干雷达系统的性能。此外,由于可达到的高重复率和FMLL的相干特性,还提出了这种激光方案,用于通过电光采样对接收信号进行数字化处理。因此,在发射器链和接收器链中仅使用一个设备进行信号生成的优势使所提出的解决方案成为微波信号生成的经济高效架构。与微波合成器的性能会随着频率的升高而大大降低的情况不同,光子射频频率的产生始终表现出出色的光谱纯度。结果表明,与现有技术的安捷伦合成器相比,所提出的技术在5 KHz以上具有出色的光谱纯度,即使在积分时间大于10毫秒的情况下定时抖动也会增加。为了在高频和低频下都实现相同的稳定性能,可以在激光器和合成器之间使用锁相环。

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