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Phase Coding of RF Pulses in Photonics-Aided Frequency-Agile Coherent Radar Systems

机译:光子辅助频率捷变相干雷达系统中射频脉冲的相位编码

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摘要

An innovative optical scheme to generate software-defined phase-modulated radio frequency (RF) pulses with carrier frequency agility from a mode-locked laser (MLL) is proposed. The technique exploits a direct digital synthesizer and a Mach-Zehnder modulator to apply an intermediate frequency modulation to the MLL's modes. The heterodyne detection of the optical signal allows the generation of amplitude- and phase-modulated RF carriers with very high phase stability, suitable for coherent radar applications. Further, a single MLL can be used to generate carriers simultaneously at different frequencies, enabling frequency hopping or multifunctional radars, with no need to increase the complexity of the transmitter. Results show chirped and Barker-coded pulses at around 10 or 40 GHz in a single setup, without any performance degradation while increasing the carrier frequency. The proposed technique allows the practical realization of compressed pulses for coherent radars over a wide carrier frequency range, allowing the development of software-defined radar systems with improved functionalities.
机译:提出了一种创新的光学方案,该方案可从锁模激光器(MLL)生成具有载波频率捷变能力的软件定义的相位调制射频(RF)脉冲。该技术利用直接数字合成器和Mach-Zehnder调制器将中频调制应用于MLL的模式。光信号的外差检测可以生成具有非常高的相位稳定性的幅度和相位调制RF载波,适用于相干雷达应用。此外,单个MLL可用于同时以不同的频率生成载波,从而支持跳频或多功能雷达,而无需增加发射机的复杂性。结果显示,在单一设置中,10频脉冲和Barker编码的脉冲频率约为10或40 GHz,而在增加载波频率的同时,性能没有任何下降。所提出的技术允许在宽的载波频率范围内实际实现相干雷达的压缩脉冲,从而可以开发具有改进功能的软件定义雷达系统。

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