1 |
TEMANEH-NYAH C , MAKI CHE J , NUJOMA J . Characterization of complex electrom agnetic environment created by multiple sources of electromagnetic radiation[J]. International Journal of Electrical, Computer, Electronics and Communication Engineering, 2014, 8 (11): 1650- 1655.
|
2 |
YUAN S J , PEI B , LIU Z H , et al. Testing and analysis of communication equipments mutual interference under complex electromagnetic environment[J]. Applied Mechanics and Mate-rials, 2014, 557, 978- 981.
|
3 |
李伟.通信装备带内电磁辐射效应建模与预测方法研究[D].石家庄:陆军工程大学, 2018.
|
|
LI W. Modeling and forecasting research on in-band electromagnetic radiation effect for communication equipment[D]. Shijia-zhuang: Army Engineering University, 2018.
|
4 |
杜文越. Ku波段导航雷达系统设计与实现[D].北京:北京理工大学, 2019.
|
|
DU W Y. Design and implementation of Ku band navigation radar system[D]. Beijing: Beijing Institute of Technology, 2019.
|
5 |
MOKRI M A, MASOUMI N, TABRIZI M M. Systematic design of an optimum FMCW system for medium to long range detection with constant beat frequency technique[C]//Proc.of the 23rd Iranian Conference on Electrical Engineering Tehran, 2015: 1406-1410.
|
6 |
李伟, 魏光辉, 潘晓东. 典型通信装备电磁敏感度判据研究[J]. 微波学报, 2016, 32 (6): 70- 75.
|
|
LI W , WEI G H , PAN X D . Research on electromagnetic susceptibility criterion for typical[J]. Journal of Microwaves, 2016, 32 (6): 70- 75.
|
7 |
孙凤荣. 现代雷达装备综合试验于评价[M]. 北京: 国防工业出版社, 2013.
|
|
SUN F R . Modern radar equipment integrated test and evaluation[M]. Beijing: National Defense Industry Press, 2013.
|
8 |
GARMATYUK D, GIZA P, CONDICT N, et al. Randomized OFDM waveforms for simultaneous radar operation and asynchronous covert communications[C]//Proc.of the IEEE Radar Conference, 2018: 975-980.
|
9 |
SINGH U K, BHATIA V, MISHRA A K. Multiple target detection and estimation of range and doppler for OFDM-RADAR system[C]//Proc.of the 4th International Conference on Signal Processing and Integrated Networks, 2017: 27-32.
|
10 |
SHI C G , WANG F , SELLATHURAI M , et al. Power minimization-based robust OFDM radar waveform design for radar and communication systems in coexistence[J]. IEEE Trans.on Signal Processing, 2018, 66 (5): 1316- 1330.
doi: 10.1109/TSP.2017.2770086
|
11 |
魏光辉, 潘晓东, 万浩江. 装备电磁辐射效应规律与作用机理[M]. 北京: 国防工业出版社, 2018.
|
|
WEI G H , PAN X D , WAN H J . Feature and mechanism of electromagnetic radiation effects for equipment[M]. Beijing: National Defense Industry Press, 2018.
|
12 |
GJB 8848-2016.系统电磁环境效应试验方法[S].北京:中央军委装备发展部, 2016.
|
|
GJB8848-2016.Electromagnetic environmental effects test methods for systems[S]. Beijing: Equipment Development Department of the Central Military Commission, 2016.
|
13 |
GJB 151B-2013.军用设备和分系统电磁发射和敏感度要求与测量[S].北京:总装备部军标出版社, 2013.
|
|
GJB 151B-2013. Electromagnetic emission and susceptibility requirements and measurements for military equipment and subsustems[S]. Beijing: Military Standard Press of General Equipment Department, 2013.
|
14 |
张肃文. 高频电子线路[M]. 北京: 高等教育出版社, 2009.
|
|
ZHANG S W . High-frenquency electronic circuit[M]. Beijing: Press of Advanced Education, 2009.
|
15 |
FAN J Q , HAO J H , SONG Z X , et al. Modelling and simulation of the modified equivalent circuit of electromagnetic radiation effects[J]. Applied Mechanics & Materials, 2014, 475-476 (3): 1661- 1665.
|
16 |
叶恒, 余小游, 慈能达, 等. 基于OFDM导频信号的测距测速方法[J]. 无线通信, 2017, 7 (3): 103- 110.
|
|
YE H , YU X Y , CI N D , et al. Novel method of range and veloc ity measurement based on OFDM pilot signal[J]. Hans Journal of Wireless Communications, 2017, 7 (3): 103- 110.
|
17 |
李伟, 魏光辉, 潘晓东, 等. 复杂电磁环境下通信装备干扰预测方法[J]. 电子与信息学报, 2017, 29 (11): 2782- 2789.
|
|
LI W , WEI G H , PAN X D , et al. Interference prediction method of communication equipment under complex electromagnetic environment[J]. Journal of Electronics and Information Technology, 2017, 29 (11): 2782- 2789.
|
18 |
LU X F , WEI G H , PAN X D , et al. A pulsed differential-mode current injection method for electromagnetic pulse field susceptibility assessment of antenna systems[J]. IEEE Trans.on Electromagnetic Compatibility, 2015, 57 (6): 1435- 1446.
doi: 10.1109/TEMC.2015.2453199
|
19 |
LI W , WEI G H , PAN X D , et al. Electromagnetic compatibi-lity prediction method under the multifrequency in-band interference environment[J]. IEEE Trans.on Electromagnetic Compatibility, 2018, 60 (2): 520- 528.
doi: 10.1109/TEMC.2017.2720961
|
20 |
WANG Y P, WEI G H, PAN X D. Mechansim analysys and verfication of out-of-band interference of communication station[C]//Proc.of the International Applied Computional Electromagnetic Society Symposium, 2017.
|
21 |
GERSTMAIR M , MELZER A , ONIC A , et al. Highly efficient environment for FMCW radar phase noise simulations in IF domain[J]. IEEE Trans.on Circuits and Systems Ⅱ: Express Briefs, 2018, 65 (5): 582- 586.
doi: 10.1109/TCSII.2018.2821270
|
22 |
SIDDIQ K, HOBDEN M, WATSON R, et al. On phase mea-surement in FMCW radar systems[C]//Proc.of the Sensor Signal Processing for Defence Conference, 2017.
|