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Review on Photonic Generation of Chirp Arbitrary Microwave Waveforms for Remote Sensing Application

机译:Chirp任意微波波形的光子产生研究进展

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摘要

A novel technique to generate an arbitrary chirped waveform by harnessing features of lithium nio-bate (LiNbO_3) Mach-Zehnder modulator is proposed and demonstrated. The most important application of chirped microwave waveform is that, it improves the range resolution of radar. Microwave photonics system provides high bandwidth capabilities of fiber-optic systems and also contains the ability to provide interconnect transmission properties, which are virtually independent of length. The low-loss wide bandwidth capability of optoelectronic systems makes them attractive for the transmission and processing of microwave signals, while the development of high-capacity optical communication systems has required the use of microwave techniques in optical transmitters and receivers. These two strands have led to the development of the research area of microwave photonics. So, it should be consider that microwave photonics as the field that studies the interaction between microwave and optical waves for applications such as communications, radars, sensors and instrumentations. In this paper, we have thoroughly reviewed the arbitrary chirped microwave generation techniques by using photonics technology.
机译:提出并演示了一种利用铌酸锂(LiNbO_3)Mach-Zehnder调制器的特征生成任意arbitrary波形的新技术。 microwave微波波形的最重要应用是,它提高了雷达的距离分辨率。微波光子学系统提供了光纤系统的高带宽能力,并且还具有提供互连传输特性的能力,而互连特性实际上与长度无关。光电系统的低损耗宽带能力使其对微波信号的传输和处理具有吸引力,而大容量光通信系统的发展要求在光发射器和接收器中使用微波技术。这两条线导致了微波光子学研究领域的发展。因此,应该考虑将微波光子学作为研究微波与光波之间相互作用的领域,以用于通信,雷达,传感器和仪器等应用。在本文中,我们已经彻底回顾了使用光子学技术产生的任意microwave微波产生技术。

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