Welcome to Journal of Beijing Institute of Technology
Volume 24Issue 4
.
Turn off MathJax
Article Contents
ZHOU Yang, ZHENG Zhe, WU Si-Liang. Generalized ionospheric dispersion simulation method for wideband satellite-ground-link radio systems[J]. JOURNAL OF BEIJING INSTITUTE OF TECHNOLOGY, 2015, 24(4): 513-518. doi: 10.15918/j.jbit1004-0579.201524.0413
Citation: ZHOU Yang, ZHENG Zhe, WU Si-Liang. Generalized ionospheric dispersion simulation method for wideband satellite-ground-link radio systems[J].JOURNAL OF BEIJING INSTITUTE OF TECHNOLOGY, 2015, 24(4): 513-518.doi:10.15918/j.jbit1004-0579.201524.0413

Generalized ionospheric dispersion simulation method for wideband satellite-ground-link radio systems

doi:10.15918/j.jbit1004-0579.201524.0413
  • Received Date:2014-04-21
  • A generalized ionospheric dispersion simulation method is presented to verify and test wideband satellite-ground-link radio systems for dispersion robustness. In the method, ionospheric dispersive effects on wideband radio waves are modeled as an allpass nonlinear phase system, thus greatly decreasing the need for signal priori information. To accurately simulate the ionospheric dispersion and reduce the implementation complexity, the system is decomposed into three new allpass subsystems: with a linear phase passing through zero frequency, a constant phase, and a nonlinear phase with zero-offset and quasi-parabolic form respectively. The three subsystems are implemented respectively by the combination of integer-interval delay and fractional delay filter, digital shifting phase and the complex-coefficient finite impulse response (FIR) filter. The ionospheric dispersion simulation can be achieved by cascading the three subsystems in a complex baseband and converting the frequency to a radio frequency. Simulation results show that the method has the ability to accurately simulate the ionospheric dispersion characteristics without knowing the signal priori information and has a low implementation complexity.
  • loading
  • [1]
    Liu J, Kuga Y, Ishimaru A, et al. Ionospheric effects on SAR imaging: a numerical study [J]. IEEE Transactions on Geoscience and Remote Sensing, 2004, 41(5): 939-946.
    [2]
    Humphreys T E, Psiaki M L, Kintner P M. Modeling the effects of ionospheric scintillation on GPS carrier phase tracking [J]. IEEE Transactions on Aerospace and Electronic System, 2010, 46(4): 1624-1637.
    [3]
    Li S Y, Liu C H. Modeling the effects of ionospheric scintillations on LEO satellite communications [J]. IEEE Communications Letters, 2004, 8(3): 147-149.
    [4]
    Zhao Junxiang, Chang Qing, Zhang Qishan, et al. Research of ionospheric time-delay error simulation in high dynamic GPS signal simulator [J]. Chinese Journal of Aeronautics, 2003, 16(3):169-176.
    [5]
    Wang Jun, Xi Xiaoli, Liu Jiangfan. The design of GPS IF signal software simulator //Proceedings of the 2010 International Symposium on Signals, Systems and Electronics. Piscataway: Institute of Electrical and Electronics Engineers Inc, 2010:1-3.
    [6]
    Hu Yan, Li Hong, Lu Mingquan. Design and implementation of a high fidelity GLONASS signal simulator //Proceedings of 2012 Spring World Congress on Engineering and Technology. Washington: IEEE Computer Society, 2012:1-3.
    [7]
    Humphreys T E, Psiaki M L, et al. Simulating ionosphere-induced scintillation for testing GPS receiver phase tracking loops [J]. IEEE Journal of Selected Topics in Signal Processing, 2009, 3(4):707-715.
    [8]
    Conker R S, El-Arini M B, Hegarty C J, et al. Modeling the effects of ionospheric scintillation on GPS/satellite-based augmentation System availability [J]. Radio Science, 2003, 48(1): 688-693.
    [9]
    Lawrence R S, Little C G, Chivers H J A. A Survey of ionospheric effects upon earth-space radio propagation [J]. Proceedings of the IEEE, 1964, 52(1):4-27.
    [10]
    Deng T B. Coefficient-symmetries for implementing arbitrary-order Lagrange-type variable fractional delay digital filters [J]. IEEE Transactions on Signal Processing, 2007, 55(8): 4078-4090.
    [11]
    Pei S C, Shyu J J. Design of arbitrary complex coefficient FIR digital filters by complex weighted least squares approximation [J]. IEEE Transactions on Circuits and Systems-Ⅱ, 1994, 41(12):817-820.
  • 加载中

Catalog

    通讯作者:陈斌, bchen63@163.com
    • 1.

      沈阳化工大学材料科学与工程学院 沈阳 110142

    1. 本站搜索
    2. 百度学术搜索
    3. 万方数据库搜索
    4. CNKI搜索

    Article Metrics

    Article views (639) PDF downloads(570) Cited by()
    Proportional views
    Related

    /

      Return
      Return
        Baidu
        map