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Photonic Doppler frequency shift measurement without ambiguity based on cascade modulation

机译:光子多普勒频率换档测量没有基于级联调制的模糊性

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摘要

A novel scheme based on the cascade structure of a dual-polarization Mach-Zehnder modulator (DPol-MZM) and a phase modulator (PM) is proposed which can simultaneously identify the value and direction of Doppler frequency shift (DFS). A low frequency reference signal and an echo signal are modulated by the DPol-MZM into orthogonal polarization states. The transmitted signal is modulated onto the reference signal by the PM and then one side band of the modulated signal is suppressed after a filter. The value of DFS is obtained by mixing the echo signal and the transmitted signal and the direction is distinguished by mixing the echo signal and the modulated reference signal. The system has only one channel and DFS measurement only needs a low frequency electrical spectrum analyzer (ESA). The measurement error is less than 0.1 Hz. Because of the cascade modulation structure and the direct frequency mixing of the transmitted signal and the echo signal, the operation frequency range of the system is not limited by the carrier frequency and the scheme has high measurement accuracy.
机译:提出了一种基于双极化Mach-Zehnder调制器(DPOL-MZM)和相位调制器(PM)的级联结构的新颖方案,其可以同时识别多普勒频移(DFS)的值和方向。低频参考信号和回声信号被DPOL-MZM调制到正交偏振状态。通过PM将发送的信号调制到参考信号上,然后在过滤器之后抑制调制信号的一个侧频带。通过混合回声信号和发送信号来获得DFS的值,并且通过混合回波信号和调制的参考信号来区分方向。该系统仅具有一个通道,DFS测量只需要低频电谱分析仪(ESA)。测量误差小于0.1Hz。由于级联调制结构和发送信号的直接频率混合和回声信号,系统的操作频率范围不受载波频率的限制,并且该方案具有高测量精度。

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