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首页> 外文期刊>Photonics Journal, IEEE >Linearized Downconverting Microwave Photonic Link Using Dual-Wavelength Phase Modulation and Optical Filtering
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Linearized Downconverting Microwave Photonic Link Using Dual-Wavelength Phase Modulation and Optical Filtering

机译:使用双波长相位调制和光学滤波的线性化下变频微波光子链路

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摘要

We describe a technique transmitting K-band microwave signals over an optical channel using electrooptic phase modulation at the transmitter followed by series phase modulation and bandpass filtering in the receiver to downconvert the transmitted signal to an intermediate frequency (IF). Unlike other downconversion methods, the method does not require a microwave mixer, high-speed optical photoreceivers, optically stabilized local oscillator, or active bias control at either phase modulator. We further show that the link can be linearized by using two wavelengths launched along orthogonal axes of a single lithium niobate phase modulator at the transmitter. We successfully demonstrate linearized downconversion of a 20-GHz microwave signal to a 250-MHz IF. The linearization method results in a 14-dB improvement in the spurious-free dynamic range compared with the nonlinearized case.
机译:我们描述了一种在发射器上使用电光相位调制在光信道上发射K波段微波信号的技术,然后在接收器中进行串联相位调制和带通滤波,以将发射的信号下变频为中频(IF)。与其他下变频方法不同,该方法不需要微波混频器,高速光接收器,光学稳定的本地振荡器或任一相位调制器的有源偏置控制。我们进一步表明,可以通过使用沿着发射器处单个铌酸锂相位调制器的正交轴发射的两个波长来使链路线性化。我们成功地演示了20 GHz微波信号到250 MHz IF的线性下变频。与非线性情况相比,线性化方法可将无杂散动态范围提高14 dB。

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