Research of radar waveform based on pulse position jitter and relative LPI performance analysis

被引:0
|
作者
Tian, Gao [1 ]
Yang, Yan [1 ]
Qi, Wang [2 ]
机构
[1] Northwestern Polytech Univ, Sch Elect & Informat, Xian 710072, Peoples R China
[2] Xian Technol Univ, Sch Elect Informat Engn, Xian 710032, Peoples R China
关键词
signal processing; simulation; low probability of intercept (LPI); pulse position jitter signal;
D O I
10.4028/www.scientific.net/AMM.457-458.1338
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
The low probability of intercept (LPI) radar waveform is reflected in a lower pulse power and complex structure of the pulse series. The previous one ensures that it avoids being intercepted by the electronic measures system (ESM) carried by the goal; the latter makes it difficult for ESM to separate and identify. As for pulse position jitter pulse array, because of pulse position's random jitter in a specific pulse interval of the pulse repetition interval(PRI), the spectrum broadens and spectral density reduces, making it hard for the ESM to intercept. Meanwhile, because the waveform doesn't have a fixed PRI, it's also difficult to be sorted or identified Therefore pulse position jitter waveform is a rational LPI waveform. Combined with a design about the LPI radar signal waveform, this paper carries out a research on PM jitter waveform, and provides a waveform generating and echo signal processing method; then the paper simulates the LPI characteristics and comes to a conclusion which has an important applying value.
引用
收藏
页码:1338 / 1343
页数:6
相关论文
共 50 条
  • [1] LPI Radar Waveform Recognition Based on CNN and TPOT
    Wan, Jian
    Yu, Xin
    Guo, Qiang
    SYMMETRY-BASEL, 2019, 11 (05):
  • [2] Radar LPI performance evaluation method for waveform domain based on IFA-HFS
    Yang C.
    Wang Q.
    Peng W.
    Li H.
    Pei S.
    Beijing Hangkong Hangtian Daxue Xuebao/Journal of Beijing University of Aeronautics and Astronautics, 2020, 46 (08): : 1574 - 1581
  • [3] LPI Radar Waveform Design With Desired Cyclic Spectrum and Pulse Compression Properties
    Liu, Xinyu
    Zhang, Tianxian
    Shi, Qiao
    Yu, Xianxiang
    Cui, Guolong
    Kong, Lingjiang
    IEEE TRANSACTIONS ON VEHICULAR TECHNOLOGY, 2023, 72 (05) : 6789 - 6793
  • [4] Wideband LPI Radar Subpulse Waveform Design, Processing, and Analysis
    Qiu, Hui
    Yu, Xianxiang
    Cui, Guolong
    Yang, Jing
    Kong, Lingjiang
    IEEE TRANSACTIONS ON AEROSPACE AND ELECTRONIC SYSTEMS, 2025, 61 (01) : 416 - 432
  • [5] LPI Radar Waveform Recognition Based on Neural Architecture Search
    Ma, Zhiyuan
    Yu, Wenting
    Zhang, Peng
    Huang, Zhi
    Lin, Anni
    Xia, Yan
    COMPUTATIONAL INTELLIGENCE AND NEUROSCIENCE, 2022, 2022
  • [6] LPI Optimization for Radar Network Based on Relative Entropy
    Shi, Chenguang
    Zhou, Jianjiang
    Wang, Fei
    Chen, Jun
    INTERNATIONAL CONFERENCE ON ELECTRONIC AND ELECTRICAL ENGINEERING (CEEE 2014), 2014, : 388 - 394
  • [7] LPI Radar Waveform Recognition Based on Features from Multiple Images
    Ma, Zhiyuan
    Huang, Zhi
    Lin, Anni
    Huang, Guangming
    SENSORS, 2020, 20 (02)
  • [8] Performance analysis of impulse radio under timing jitter using M-ary bipolar pulse waveform and position modulation
    Lin, SC
    Chiueh, TD
    2003 IEEE CONFERENCE ON ULTRA WIDEBAND SYSTEMS AND TECHNOLOGIES, CONFERENCE PROCEEDINGS, 2003, : 121 - 125
  • [9] LPI Radar Waveform Recognition Based on Time-Frequency Distribution
    Zhang, Ming
    Liu, Lutao
    Diao, Ming
    SENSORS, 2016, 16 (10)
  • [10] LPI radar waveform recognition algorithm based on PSO-CNN
    Zhao S.
    Liu S.
    Wang H.
    Xi Tong Gong Cheng Yu Dian Zi Ji Shu/Systems Engineering and Electronics, 2021, 43 (12): : 3552 - 3563