光学学报, 2017, 37 (12): 1206003, 网络出版: 2018-09-06   

基于色散补偿光子晶体光纤的双通道光子时间拉伸模数转换器系统研究 下载: 723次

Dual-Channel Photonic Time-Stretched Analog-to-Digital Converter System Based on Dispersion Compensating Photonic Crystal Fiber
作者单位
1 装备学院研究生院, 北京 101416
2 装备学院光电装备系, 北京 101416
引用该论文

王俊达, 陈颖, 陈向宁. 基于色散补偿光子晶体光纤的双通道光子时间拉伸模数转换器系统研究[J]. 光学学报, 2017, 37(12): 1206003.

Junda Wang, Ying Chen, Xiangning Chen. Dual-Channel Photonic Time-Stretched Analog-to-Digital Converter System Based on Dispersion Compensating Photonic Crystal Fiber[J]. Acta Optica Sinica, 2017, 37(12): 1206003.

参考文献

[1] Walden R H. Analog-to-digital converter survey and analysis[J]. IEEE Journal on Selected Areas in Communications, 1999, 17(4): 539-550.

    Walden R H. Analog-to-digital converter survey and analysis[J]. IEEE Journal on Selected Areas in Communications, 1999, 17(4): 539-550.

[2] Bracken J A, Xu C Q. All-optical wavelength conversions based on MgO-doped LiNbO3 QPM waveguides using an EDFA as a pump source[J]. IEEE Photonics Technology Letters, 2003, 15(7): 954-956.

    Bracken J A, Xu C Q. All-optical wavelength conversions based on MgO-doped LiNbO3 QPM waveguides using an EDFA as a pump source[J]. IEEE Photonics Technology Letters, 2003, 15(7): 954-956.

[3] Kärtner FX, AmatyaR, AraghchiniM, et al. Photonic analog-to-digital conversion with electronic-photonic integrated circuits[C]. SPIE, 2008, 6898: 689806.

    Kärtner FX, AmatyaR, AraghchiniM, et al. Photonic analog-to-digital conversion with electronic-photonic integrated circuits[C]. SPIE, 2008, 6898: 689806.

[4] KhiloA, Sorace CM, Birge JR, et al. Accurate photonic analog-to-digital conversion[C]. General Assembly and Scientific Symposium, 2011.

    KhiloA, Sorace CM, Birge JR, et al. Accurate photonic analog-to-digital conversion[C]. General Assembly and Scientific Symposium, 2011.

[5] 陶世兴, 邓向阳, 李建中, 等. 带宽为56.978 GHz光拍频信号实时测量[J]. 光学学报, 2017, 37(3): 0306004.

    陶世兴, 邓向阳, 李建中, 等. 带宽为56.978 GHz光拍频信号实时测量[J]. 光学学报, 2017, 37(3): 0306004.

    Tao Shixing, Deng Xiangyang, Li Jianzhong, et al. Real-time measurement of light beat-frequency signal with bandwidth of 56.978 GHz[J]. Acta Optica Sinica, 2017, 37(3): 0306004.

    Tao Shixing, Deng Xiangyang, Li Jianzhong, et al. Real-time measurement of light beat-frequency signal with bandwidth of 56.978 GHz[J]. Acta Optica Sinica, 2017, 37(3): 0306004.

[6] Takahashi K, Matsui H, Nagashima T, et al. Resolution upgrade toward 6-bit optical quantization using power-to-wavelength conversion for photonic analog-to-digital conversion[J]. Optics Letters, 2013, 38(22): 4864-4867.

    Takahashi K, Matsui H, Nagashima T, et al. Resolution upgrade toward 6-bit optical quantization using power-to-wavelength conversion for photonic analog-to-digital conversion[J]. Optics Letters, 2013, 38(22): 4864-4867.

[7] Scotti F, Laghezza F, Serafino G, et al. In-field experiments of the first photonics-based software-defined coherent, radar[J]. Journal of Lightwave Technology, 2014, 32(20): 3365-3372.

    Scotti F, Laghezza F, Serafino G, et al. In-field experiments of the first photonics-based software-defined coherent, radar[J]. Journal of Lightwave Technology, 2014, 32(20): 3365-3372.

[8] 钱阿权, 邹卫文, 吴龟灵, 等. 光子时间拉伸模数转换系统的多通道化设计与实现[J]. 中国激光, 2015, 42(5): 0505001.

    钱阿权, 邹卫文, 吴龟灵, 等. 光子时间拉伸模数转换系统的多通道化设计与实现[J]. 中国激光, 2015, 42(5): 0505001.

    Qian Aquan, Zou Weiwen, Wu Guiling, et al. Design and implementation of multi-channel photonic time-stretch analog-to-digital converter[J]. Chinese J Lasers, 2015, 42(5): 0505001.

    Qian Aquan, Zou Weiwen, Wu Guiling, et al. Design and implementation of multi-channel photonic time-stretch analog-to-digital converter[J]. Chinese J Lasers, 2015, 42(5): 0505001.

[9] 张华林. 一种改善实时性的光辅助微波频率测量方法的研究[J]. 中国激光, 2015, 42(12): 1208008.

    张华林. 一种改善实时性的光辅助微波频率测量方法的研究[J]. 中国激光, 2015, 42(12): 1208008.

    Zhang Hualin. Study on photo-assisted microwave frequency measurement method with improved real-time performance[J]. Chinese J Lasers, 2015, 42(12): 1208008.

    Zhang Hualin. Study on photo-assisted microwave frequency measurement method with improved real-time performance[J]. Chinese J Lasers, 2015, 42(12): 1208008.

[10] Han Y, Jalali B. Photonic time-stretched analog-to-digital converter: Fundamental concepts and practical considerations[J]. Journal of Lightwave Technology, 2003, 21(12): 3085-3103.

    Han Y, Jalali B. Photonic time-stretched analog-to-digital converter: Fundamental concepts and practical considerations[J]. Journal of Lightwave Technology, 2003, 21(12): 3085-3103.

[11] 徐亚然. 时间拉伸式光电模数转换器及其并行多通道特性研究[D]. 成都: 电子科技大学, 2015.

    徐亚然. 时间拉伸式光电模数转换器及其并行多通道特性研究[D]. 成都: 电子科技大学, 2015.

    XuYaran. Research on photonic time-stretch ADCs and their parallel multichannel characteristics[D]. Chengdu: University of Electronic Science and Technology of China, 2015.

    XuYaran. Research on photonic time-stretch ADCs and their parallel multichannel characteristics[D]. Chengdu: University of Electronic Science and Technology of China, 2015.

[12] 白成林, 王秋国. 光子晶体光纤中超连续谱产生及应用[M]. 北京: 科学出版社, 2015.

    白成林, 王秋国. 光子晶体光纤中超连续谱产生及应用[M]. 北京: 科学出版社, 2015.

    BaiYucheng, WangQiuguo. Production and application of continuous spectrum in photonic crystal fiber[M]. Beijing: Science Press, 2015.

    BaiYucheng, WangQiuguo. Production and application of continuous spectrum in photonic crystal fiber[M]. Beijing: Science Press, 2015.

[13] Li S, Yu C X, Kang Z, et al. Experimental demonstration of impact of optical nonlinearity on photonic time stretched analog-to-digital converter based on photonic crystal fiber[J]. Optik-International Journal for Light and Electron Optics, 2015, 126(24): 4936-4939.

    Li S, Yu C X, Kang Z, et al. Experimental demonstration of impact of optical nonlinearity on photonic time stretched analog-to-digital converter based on photonic crystal fiber[J]. Optik-International Journal for Light and Electron Optics, 2015, 126(24): 4936-4939.

[14] 高光天. 模数转换器应用技术[M]. 北京: 科学出版社, 2001.

    高光天. 模数转换器应用技术[M]. 北京: 科学出版社, 2001.

    GaoGuangtian. Analog to digital converter application [M]. Beijing: Science Press, 2001.

    GaoGuangtian. Analog to digital converter application [M]. Beijing: Science Press, 2001.

王俊达, 陈颖, 陈向宁. 基于色散补偿光子晶体光纤的双通道光子时间拉伸模数转换器系统研究[J]. 光学学报, 2017, 37(12): 1206003. Junda Wang, Ying Chen, Xiangning Chen. Dual-Channel Photonic Time-Stretched Analog-to-Digital Converter System Based on Dispersion Compensating Photonic Crystal Fiber[J]. Acta Optica Sinica, 2017, 37(12): 1206003.

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