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Dynamic-Range Enhancement for a Microwave Photonic Link Based on a Polarization Modulator

机译:基于极化调制器的微波光子链路动态范围增强

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摘要

A microwave photonic link (MPL) with an increased spurious-free dynamic range (SFDR) using a polarization modulator is proposed and experimentally demonstrated. The fundamental concept of the proposed approach to increase the SFDR is to reduce the third-order intermodulation distortion (IMD3) and to improve the modulation efficiency by partial carrier suppression, which is realized here by producing two channels of intensity-modulated signals with one having only the upper sidebands and the other having the optical carrier that is partially suppressed and the upper sidebands using two optical filters. If the optical powers into the two channels are kept identical, the combination of the two signals at a photodetector will fully cancel the IMD3 terms. In addition, the modulation efficiency is optimized due to the partial carrier suppression, which also leads to an increased SFDR. The proposed MPL is theoretically studied and experimentally demonstrated. An SFDR of at a noise floor of is achieved, which is 15 dB higher than that of a regular intensity-modulation and direct-detection MPL.
机译:提出并通过实验证明了使用偏振调制器的无杂散动态范围(SFDR)增加的微波光子链路(MPL)。所提出的增加SFDR的方法的基本概念是通过部分载波抑制来减少三阶互调失真(IMD3)并提高调制效率,这在此处通过产生两个强度调制信号通道来实现,其中一个具有仅上边带和另一个具有被部分抑制的光载波,并且上边带使用两个滤光器。如果进入两个通道的光功率保持相同,则光电检测器上两个信号的组合将完全消除IMD3项。另外,由于部分载波抑制而优化了调制效率,这也导致了SFDR的增加。所提出的MPL在理论上得到了研究和实验证明。 SFDR为的本底噪声,比常规强度调制和直接检测MPL的SFDR高15 dB。

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