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Photonic Generation of Phase-Modulated RF Signals for Pulse Compression Techniques in Coherent Radars

机译:相干雷达中用于脉冲压缩技术的调相射频信号的光子产生。

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摘要

A novel and flexible photonics-based scheme is proposed for generating phase-coded RF pulses suitable for coherent radar systems with pulse compression techniques. After selecting two modes from a mode-locked laser (MLL), the technique exploits an optical in-phase/quadrature modulator driven by a low-sample rate and low-noise direct digital synthesizer to modulate the phase of only one mode. The two laser modes are then heterodyned in a photodiode, and the RF pulse is properly filtered out. The scheme is experimentally validated implementing a 4-bit Barker code and a linear chirp on radar pulses with a carrier frequency of about 25 GHz, starting from an MLL at about 10 GHz. The measures of phase noise, amplitude- and phase-transients, and autocorrelation functions confirm the effectiveness of the scheme in producing compressed radar pulses without affecting the phase stability of the optically generated high-frequency carriers. An increase in the radar resolution from 150 to 37.5 m is calculated. The proposed scheme is capable of flexibly generating software-defined phase-modulated RF pulses with high stability, even at very high carrier frequency, using only a single commercial device with potentials for wideband modulation. It can therefore allow a new generation of high-resolution coherent radars with reduced complexity and cost.
机译:提出了一种新颖且灵活的基于光子学的方案,该方案可通过脉冲压缩技术生成适用于相干雷达系统的相位编码射频脉冲。从锁模激光器(MLL)中选择了两种模式后,该技术利用了由低采样率和低噪声直接数字合成器驱动的光学同相/正交调制器来调制仅一种模式的相位。然后,将两个激光模式在光电二极管中进行异质处理,并适当滤除RF脉冲。该方案已通过实验验证,在载波频率约为25 GHz的雷达脉冲上实现4位Barker码和线性线性调频,从大约10 GHz的MLL开始。相位噪声,幅度和相位瞬变以及自相关函数的测量结果证实了该方案在产生压缩雷达脉冲的过程中有效,而不会影响光学产生的高频载波的相位稳定性。计算得出雷达分辨率从150增加到37.5 m。所提出的方案能够仅使用单个具有宽带调制潜力的商用设备,即使在非常高的载波频率下,也能够灵活地产生具有高稳定性的软件定义的相位调制RF脉冲。因此,它可以允许降低复杂性和降低成本的新一代高分辨率相干雷达。

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