红外与激光工程, 2017, 46 (9): 0920003, 网络出版: 2017-11-17   

可调谐窄带宽的负系数微波光子滤波器

Tunable narrow bandwidth negative coefficient microwave photonic filter
作者单位
1 安徽大学 电子信息工程学院, 安徽 合肥 230601
2 合肥师范学院 计算机系, 安徽 合肥230601
3 安徽庆宇光电科技有限公司, 安徽 合肥230031
摘要
针对负系数微波光子滤波器很难用正系数的光学抽头来实现, 提出了一款基于色散器件级联的可调谐、窄带宽、负系数微波光子滤波器。利用整形后的多波长光纤激光器的输出信号作为滤波器的抽头光源, 将单模光纤与F-P光纤环级联作为延迟单元, 实现滤波器的频率选择性。利用相位调制器和级联的色散器件共同作用, 实现负系数的微波光子滤波器。实验得到了波长间隔为0.34 nm的多达37个激光信号的稳定输出, 进而基于此实验结果仿真研究了F-P光纤环中C2、C3的耦合系数r、不同长度的可调谐光纤延迟线(TODL)和延迟单元中不同长度的单模光纤等参数对微波光子滤波器性能的影响。
Abstract
A tunable, narrow bandwidth, negative coefficient microwave photonic filter based on cascaded dispersion devices was proposed, because the negative coefficient microwave photonic filter was very difficult to realize by the way of positive coefficient optical taps. The reshaped output signals of the multi-wavelength fiber laser were used as the tap of the filter. SMF and the F-P fiber ring were cascaded as a delay unit to realize the frequency selectivity of the filter. The negative coefficient was realized by a mixture of phase modulator and cascaded dispersion devices. As many as 37 stable laser signals with 0.34 nm wavelength interval were obtained by the experiment. And then based on the experiment results, the effects of coupling coefficient r of C2, C3 in the F-P fiber ring, different length TODL, and different length SMF in the delay unit etc. on the microwave photonic filters performance were simulated and studied.
参考文献

[1] Preussler S, Zadok A, Stern Y, et al. Microwave-photonic filters[C]//German Microwave Conference, 2016.

[2] Xu E, Pan S, Li P. Reconfigurable microwave photonic filter based on polarization modulation[J]. Optical Engineering, 2015, 55(3): 0311201-0311205.

[3] Mora J, Ortega B, Andres M V, et al. Dynamic opticaltransversal filters based on a tunable dispersionfiber Bragg grating[C]//International Topical Meeting on Microwave Photonics. IEEE, 2002: 203-206.

[4] Huang L, Chen D, Zhang F, et al. Microwave photonicfilter with multiple independently tunable passbands based on a broadband optical source[J]. Optics Express, 2015, 23(20): 25539-25552.

[5] Jin Yanbing, Erwin H W Chan, Feng Xinhuan, et al. Tunable negative coefficient microwave photonic filter based on a polarization modulator and a polarization beam interferometer[J]. Chinese Optics Letters, 2015, 13(5): 14-16.

[6] 龙洁, 李政勇, 叶祝雄, 等. 基于偏置马赫-曾德调制器的微波光子信号倍频[J]. 红外与激光工程, 2014, 43(12):4078-4081.

    Long Jie, Li Zhengyong, Ye Zhuxiong, et al. Frequency multiplication of microwave photonic signal based on biased Mach-Zehnder modulator[J]. Infrared and Laser Engineering, 2014, 43(12): 4078-4081. (in Chinese)

[7] Zhang Ailing, Huang Cong, Wu Xiaojun. A band-pass microwave photonic filter based on Lyot-Sagnac filter and cascaded optical structures[J]. Optoelectronics Letters, 2013, 10(1): 5-8.

[8] 张丽丽, 童峥嵘, 曹晔, 等. 基于多波长光纤激光器和色散器件级联的微波光子带通滤波器[J]. 中国激光, 2014, 41(2): 0205004.

    Zhang Lili, Tong Zhengrong, Cao Ye, et al. Microwave photonic bandpass filter based on multi-wavelength fiber lasers and cascaded dispersion devices[J]. Chinese Journal of Lasers, 2014, 41(2): 0205004. (in Chinese)

[9] 冯德军, 黄文育, 纪鹏宇, 等. 基于石墨烯可饱和吸收体的掺铒光纤环形腔脉冲激光器[J]. 光学 精密工程, 2013, 21(5): 1097-1101.

    Feng Dejun, Huang Wenyu, Ji Pengyu, et al. Erbium-doped fiber ring cavity pulsed laser based on graphene saturable absorber[J]. Optics and Precision Engineering, 2013, 21(5): 1097-1101. (in Chinese)

[10] 姜明顺, 冯德军, 隋青美. 机械感生长周期光纤光栅的可调谐环形光纤激光器[J]. 光学 精密工程, 2010, 18(2): 311-316.

    Jiang Mingshun, Feng Dejun, Sui Qingmei. Tunablering fiber laser using mechanical-inducedlong-period fiber grating[J]. Optics and Precision Engineering, 2010, 18(2): 311-316. (in Chinese)

[11] 潘洪刚, 童峥嵘, 张爱玲, 等. 基于级联多模布拉格光栅和高精细度滤波器的可调谐双波长窄线宽掺铒光纤激光器[J]. 红外与激光工程, 2014, 43(12): 3912-3917.

    Pan Honggang, Tong Zhengrong, Zhang Ailing, et al. Switchable narrow line-width dual-wavelength erbium-doped fiber laser using cascaded multi-mode Bragg gratings and high fineness filter[J]. Infrared and Laser Engineering, 2014, 43(12): 3912-3917. (in Chinese)

[12] Shahabuddin M Z, Yusoff Z, Ahmad H, et al. Multi-wavelength erbium-doped fiber laser using four-wave mixing effect in doped fiber[J]. Chinese Optics Letters, 2011, 9(6): 80-81.

[13] 方秀丽, 童峥嵘, 曹晔, 等. 采用F-P光纤环滤波器的窄线宽环形腔光纤激光器[J]. 红外与激光工程, 2013, 42(2): 329-333.

    Fang Xiuli, Tong Zhengrong, Cao Ye, et al. Narrow linewidth ring-cavity fiber laser using F-P fiber ring filter[J]. Infrared and Laser Engineering, 2013, 42(2): 329-333. (in Chinese)

贺超, 廖同庆, 吴昇, 魏小龙. 可调谐窄带宽的负系数微波光子滤波器[J]. 红外与激光工程, 2017, 46(9): 0920003. He Chao, Liao Tongqing, Wu Sheng, Wei Xiaolong. Tunable narrow bandwidth negative coefficient microwave photonic filter[J]. Infrared and Laser Engineering, 2017, 46(9): 0920003.

本文已被 2 篇论文引用
被引统计数据来源于中国光学期刊网
引用该论文: TXT   |   EndNote

相关论文

加载中...

关于本站 Cookie 的使用提示

中国光学期刊网使用基于 cookie 的技术来更好地为您提供各项服务,点击此处了解我们的隐私策略。 如您需继续使用本网站,请您授权我们使用本地 cookie 来保存部分信息。
全站搜索
您最值得信赖的光电行业旗舰网络服务平台!