Microwave Signal Generation and Noise Reduction Using Cascaded MZM for Radar Applications

K. A. Fayza, P. A. Meeva, Asha Maria Joseph, D. Meena, S. Talabattula
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Abstract

In a radar system, frequency up and down conversion processes requires higher frequency local oscillators (LO). Advancement in microwave photonics and optical domain made it possible to synthesis high frequency microwave signals. There are variety of microwave generation techniques available in optical domain such as optical heterodyning, optical injection locking, optical phase lock loop, Mach-Zehnder modulator based photonic technique etc. It is known that Mach-Zehnder modulator based microwave signal generation is superior in terms of reduced complexity and noise effects. But this work explores the possibility of reducing noise still further for generating signals in 2-4GHz range (preferred for normal S-band of radar operation). For this purpose single and cascaded Mach-Zehnder configurations are compared and evaluated. An addition of cascaded Mach-Zehnder modulator results in noise reduction. We also propose that the carrier signal filtering is not required in cascaded configuration compared to single Mach-Zehnder modulator which is an additional component in single Mach-Zehnder modulator. The work is also supported with results and its analysis for above configurations.
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级联MZM用于雷达的微波信号产生和降噪
在雷达系统中,频率上下转换过程需要更高频率的本振(LO)。微波光子学和光畴的发展使高频微波信号的合成成为可能。在光学领域有多种微波产生技术,如光外差、光注入锁定、光锁相环、基于马赫-曾德尔调制器的光子技术等。众所周知,基于马赫-曾德尔调制器的微波信号产生在降低复杂性和噪声效应方面具有优越性。但这项工作探索了进一步降低噪声的可能性,以产生2-4GHz范围内的信号(首选用于正常的s波段雷达操作)。为此,对单马赫-曾德构型和级联马赫-曾德构型进行了比较和评估。级联马赫-曾德尔调制器的加入降低了噪声。我们还提出,与单马赫-曾德调制器相比,级联配置中不需要载波信号滤波,而单马赫-曾德调制器是单马赫-曾德调制器的附加组件。本文还提供了上述配置的结果和分析。
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