Photonic generation and anti-dispersion transmission of the quaternary phase-coded microwave waveforms

被引:0
作者
Qin, Xu [1 ]
Yang, Shuna [1 ]
He, Hongxia [1 ]
Yang, Bo [1 ]
Chi, Hao [1 ]
机构
[1] Hangzhou Dianzi Univ, Sch Commun Engn, Hangzhou, Peoples R China
基金
中国国家自然科学基金;
关键词
phase-coded microwave waveforms; anti-dispersion transmission; integrated modulators; MODULATION; SIGNALS; PULSES; BINARY;
D O I
10.1117/1.OE.63.3.038104
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
A simple photonic approach to generating and anti-dispersion transmitting the quaternary phase-coded microwave waveforms is proposed and experimentally demonstrated. In this approach, an integrated dual-polarization binary phase shift keying (DP-BPSK) modulator is adopted and driven by two parallel pre-encoding signals as well as two RF inputs with 90-deg phase shift. By simply presetting the bias voltages on the DP-BPSK modulator, the phase-coded microwave signals with desired quadrature phase shifts and the immunity to dispersion-induced power fading can be obtained. A complete theoretical analysis on operation principle is presented. Experiments on the generation and anti-dispersion transmission of the 1 Gb/s quaternary phase-coded waveforms with the center frequencies of 6 or 7 GHz over 10 km SMF are successfully carried out. The proposed system can achieve the waveforms with multiple phase coded formats and transmit them over long-distance optical fiber without dispersion-induced power fading. Besides, it also features simple architecture, excellent reconfigurability, better Doppler tolerance and sensitivity of objective recognition, which is highly desirable in modern radar networks based on optical fiber transmission.
引用
收藏
页数:12
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共 22 条
  • [11] Toward a New Generation of Radar Systems Based on Microwave Photonic Technologies
    Serafino, Giovanni
    Scotti, Filippo
    Lembo, Leonardo
    Hussain, Bilal
    Porzi, Claudio
    Malacarne, Antonio
    Maresca, Salvatore
    Onori, Daniel
    Ghelfi, Paolo
    Bogoni, Antonella
    [J]. JOURNAL OF LIGHTWAVE TECHNOLOGY, 2019, 37 (02) : 643 - 650
  • [12] Photonics Generation of Baseband-Free Arbitrary-Phase-Coded Microwave Waveform Pulse
    Song, Chunqi
    Huang, Shanguo
    Gao, Xinlu
    Zheng, Zhennan
    Song, Xiyao
    Bai, Yunping
    Gao, Guanjun
    Ma, Jingcan
    [J]. IEEE PHOTONICS TECHNOLOGY LETTERS, 2021, 33 (09) : 457 - 460
  • [13] All-optical generation of binary phase-coded microwave pulses without baseband components based on a dual-parallel Mach-Zehnder modulator
    Song, Chunqi
    Lei, Mingzheng
    Qian, Jinwang
    Zheng, Zhennan
    Huang, Shanguo
    Gao, Xinlu
    [J]. OPTICS EXPRESS, 2019, 27 (14): : 20064 - 20072
  • [14] Phase-Coded Millimeter-Wave Waveform Generation Using a Spatially Discrete Chirped Fiber Bragg Grating
    Wang, Chao
    Yao, Jianping
    [J]. IEEE PHOTONICS TECHNOLOGY LETTERS, 2012, 24 (17) : 1493 - 1495
  • [15] Photonic generation of frequency-tunable biphase and quadriphase coded pulse signals without background interference enabled by vector modulation and balanced detection
    Wang, Wuying
    Fan, Yangyu
    Liu, Xichun
    Guo, Zhe
    Liu, Guo
    Wei, Longchao
    Lv, Guoyun
    [J]. OPTICS EXPRESS, 2022, 30 (02) : 1410 - 1421
  • [16] A novel Doppler-tolerant polyphase codes for pulse compression based on hyperbolic frequency modulation
    Yang, Jie
    Sarkar, Tapan K.
    [J]. DIGITAL SIGNAL PROCESSING, 2007, 17 (06) : 1019 - 1029
  • [17] Microwave Photonics
    Yao, Jianping
    [J]. JOURNAL OF LIGHTWAVE TECHNOLOGY, 2009, 27 (1-4) : 314 - 335
  • [18] Microwave Photonic Multifunctional Phase Coded Signal Generator
    Zhai, Weile
    Wen, Aijun
    [J]. IEEE PHOTONICS TECHNOLOGY LETTERS, 2019, 31 (16) : 1377 - 1380
  • [19] Zhai WS, 2020, 2020 ASIA COMMUNICATIONS AND PHOTONICS CONFERENCE (ACP) AND INTERNATIONAL CONFERENCE ON INFORMATION PHOTONICS AND OPTICAL COMMUNICATIONS (IPOC)
  • [20] Photonic generation of background-free frequency-doubled phase-coded microwave pulses with immunity to periodic power fading
    Zhang, Wu
    Tan, Qinggui
    Li, Xiaojun
    Wang, Di
    [J]. OPTICS LETTERS, 2020, 45 (06) : 1407 - 1410