光子学报, 2019, 48 (3): 0307002, 网络出版: 2019-04-02  

基于级联MZM倍频系数可调高频微波信号光产生方法

Approach to Generate High-frequency Microwave Signal with Frequency Multiplication Factor Tunability by Using Cascaded Mach-Zehnder Modulators
作者单位
空军预警学院, 武汉 430019
引用该论文

丛雯珊, 余岚, 沃江海, 王亚兰, 王安乐. 基于级联MZM倍频系数可调高频微波信号光产生方法[J]. 光子学报, 2019, 48(3): 0307002.

CONG Wen-shan, YU Lan, WO Jiang-hai, WANG Ya-lan, WANG An-le. Approach to Generate High-frequency Microwave Signal with Frequency Multiplication Factor Tunability by Using Cascaded Mach-Zehnder Modulators[J]. ACTA PHOTONICA SINICA, 2019, 48(3): 0307002.

参考文献

[1] LI Ruo-ming, LI Wang-zhe, DING Man-lai, et,al. Demonstration of a microwave photonic synthetic aperture radar based on photonic-assisted signal generation and stretch processing[J].Optics Express,2017,25(13): 14334.

[2] WANG An-le, WO Jiang-hai, LUO Xiong, et, al. Ka-band microwave photonic ultra-wideband imaging radar for capturing quantitative target information[J]. Optics Express,2018,26(16): 20708.

[3] MICHAEL E. Microwave photonics for electronic warfare applications[C]. IEEE international topical meeting on microwave photonic,2008: 275-278.

[4] MATTHEW O, GEORGE E. Photonics as an enabler for multifunction electronic warfare capability[C]. IEEE Avionics and Vehicle Fiber-Optics and Photonics Conference (AVFOP), 2016.

[5] MARYAM N, MEHDI S.Optimization of optical single sideband configurations for radio over fiber transmission and multi-type data communication over a DWDM link[J]. Computers &Electrical Engineering,2014,40(1): 83-91.

[6] LI Ze, LI Wang-zhe, CHI Hao, et al. Photonic generation of phase-coded microwave signal with large frequency tunability [J]. IEEE Photonics Technology Letters, 2011, 23(11): 712-714.

[7] LI Ming, LI Ze, YAO Jian-ping. Photonic generation of precisely π phase-shifted binary phase-coded microwave signal [J]. IEEE Photonics Technology Letters, 2012, 24(22): 2001-2004.

[8] LI Ze, LI Ming, CHI Hao, et al. Photonic generation of phase-coded millimeter-wave signal with large frequency tunability using a polarization-maintaining fiber bragg grating [J]. IEEE Microwave and Wireless Components Letters, 2011, 21(12): 694-696.

[9] CHEN Wei, WEN Ai-jun, GAO Yong-sheng, et.al. Photonic generation of binary and quaternary phase-coded microwave waveforms with frequency quadrupling [J]. IEEE Phoronics Journal, 2016,8(2): 5500808.

[10] BAI Guang-fu, HU Lin, JIANG Yang, et al. Versatile photonic microwave waveforms generation using a dual-parallel Mach-Zehnder modulator without other dispersive elements [J]. Optics Communications,2017,396(3): 134-140.

[11] CHEN Yang, WEN Ai-jun, SHANG Lei. Analysis of an optical mm-wave generation scheme with frequency octupling using two cascaded Mach-Zehnder modulators [J]. Optics Communications, 2010,283(7): 4933-4941.

[12] TENG Yi-chao, CHEN Yi-wang, ZHANG Bao-fu, et al. Photonic generation of frequency-decupled microwave signal based on cascaded Mach-Zehnder modulators [J].Optik, 2016, 127(20): 9275-9279.

[13] ZHU Zi-hang, ZHAO Shang-hong, LI Xuan, et al. Photonic generation of frequency-sextupled microwave signal based on dual-polarization modulation without an optical filter[J].Optics &Laser Technology, 2017,87(8): 1-6.

[14] ZHANG Ya-mei, ZHANG Fang-zheng, PAN Shi-long. Generation of frequency-multiplied and phase-coded signal using an optical polarization division multiplexing modulator [J].IEEE Transactions on Microwave Theory and Techniques, 2017,65(2): 651-660

[15] ZHU Zi-hang, ZHAO Shang-hong, LI Xuan et al. Photonic generation of frequency-octupled microwave signal with reduced electrical local oscillator power and improved spectrum purity [J]. Optical and Quantum Electronics, 2017,49(2): 65.

丛雯珊, 余岚, 沃江海, 王亚兰, 王安乐. 基于级联MZM倍频系数可调高频微波信号光产生方法[J]. 光子学报, 2019, 48(3): 0307002. CONG Wen-shan, YU Lan, WO Jiang-hai, WANG Ya-lan, WANG An-le. Approach to Generate High-frequency Microwave Signal with Frequency Multiplication Factor Tunability by Using Cascaded Mach-Zehnder Modulators[J]. ACTA PHOTONICA SINICA, 2019, 48(3): 0307002.

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