Modeling and Evaluating Method of Second-Order Intermodulation LF Blocking Effect for Spectrum-Dependent Equipment

被引:0
|
作者
Wei G. [1 ]
Zheng J. [1 ]
Zhao H. [1 ]
Li M. [1 ]
Du X. [1 ]
机构
[1] National Key Laboratory on Electromagnetic Environment Effects, Shijiazhuang Campus of Army Engineering University, Shijiazhuang
关键词
Blocking effect; Effect evaluation; Electromagnetic radiation; Modeling method; Second-order intermodulation;
D O I
10.15918/j.tbit1001-0645.2020.224
中图分类号
学科分类号
摘要
To test and evaluate the adaptability of the spectrum-dependent equipment to complex electromagnetic environment, introducing a LF blocking interference factor and the relative value of LF interference level, a second-order intermodulation LF blocking effect model was established to investigate the mechanism of second-order intermodulation LF blocking effect. Combining theoretical derivation and experimental measurement, a method was provided to determine the model parameter, the modeling and evaluating processes were established for the second-order intermodulation LF blocking effect. Finally, taking a satellite navigation receiver as the test equipment, an experimental verification was carried out. The results show that, using the second-order intermodulation LF blocking effect model parameters of the equipment under test at a specific working frequency, according to the tested data of the critical interference field strength of the single frequency electromagnetic radiation blocking and the distribution parameters of environmental electromagnetic field spectrum, the second-order intermodulation LF blocking effect of the spectrum-dependent equipment can be objectively evaluated, error is within 2 dB. © 2021, Editorial Department of Transaction of Beijing Institute of Technology. All right reserved.
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页码:1095 / 1102
页数:7
相关论文
共 13 条
  • [1] CHEN Shuxin, CHEN Jianhua, WU Hao, Et al., Research on direction finding distribution of GNSS jamming signals under multipath conditions, Transactions of Beijing Institute of Technology, 39, 4, pp. 33-38, (2019)
  • [2] CUI Yongchao, Research on anti-jamming capability of direct spread spectrum communication in under water acoustic communication, (2014)
  • [3] FENG Jining, WU Siliang, JIANG Wei, Et al., Study and comparison of DSSS narrowband interference suppression filters [J], Transactions of Beijing Institute of Technology, 30, 6, pp. 727-731, (2010)
  • [4] TENENG S K, ROBERT R Z., Empirical investigation of wireless sensor network performance in noisy environments, Journal of Engineering, Design and Technology, 12, 1, pp. 29-38, (2014)
  • [5] CHENG Suwei, Discussion on electromagnetic radiation [J], China High Tech Enterprises, 2, pp. 107-108, (2010)
  • [6] WANG Haijiang, Research on anti narrowband intorefence algorithm in LEO satellite spread spectrum communication, (2004)
  • [7] TANG X, DING Z, ZHIPENG W U, Et al., Third order intermodulation characteristics and experimental measurement of microwave power amplifier, (2019)
  • [8] YANG K., Electromagnetic compatibility evaluation of In-use medical devices, (2019)
  • [9] Requirements for the control of electromagnetic interference characteristics of subsystems and equipment, (2015)
  • [10] KEITH A., EMC for the functional safety of automobiles -why EMC testing is insufficient, and what is necessary, IEEE International Symposium on EMC, (2008)