Systems Engineering and Electronics ›› 2023, Vol. 45 ›› Issue (2): 424-430.doi: 10.12305/j.issn.1001-506X.2023.02.13
• Sensors and Signal Processing • Previous Articles
Xin LI1,2,*, Xiaoyun XIA1,2, Yushi ZHANG1, Penglang SHUI2
Received:
2021-09-01
Online:
2023-01-13
Published:
2023-02-04
Contact:
Xin LI
CLC Number:
Xin LI, Xiaoyun XIA, Yushi ZHANG, Penglang SHUI. RCS estimation and characteristic analysis of weak target under sea background[J]. Systems Engineering and Electronics, 2023, 45(2): 424-430.
1 | SUBHANKAR S , RABINDRANTH B , BONSIBADAN M , et al. Embedded digital MIMO radar using SDR for target detection and RCS measurement[J]. IETE Journal of Research, 2015, 62 (1): 100- 105. |
2 |
ZUO Y C , GUO L X , LIU W , et al. Position error detection and compensation for far-field radar cross-section measurement[J]. IEEE Antennas and Wireless Propagation Letters, 2021, 20 (8): 1518- 1522.
doi: 10.1109/LAWP.2021.3089514 |
3 | MARCO I, MARTA T F. RCS analysis of 3-dimensional ship for SAR performance evaluation[C]//Proc. of the 13th European Conference on Synthetic Aperture Radar, 2021. |
4 | LEE S J , JEONG S J , KANG B S , et al. Classification of shell-shaped targets using RCS and fuzzy classifier[J]. IEEE Trans.on Antennas & Propagation, 2016, 64 (4): 1434- 1443. |
5 |
MICHAL M . On Bayesian tracking and prediction of radar cross section[J]. IEEE Trans.on Aerospace and Electronic Systems, 2019, 55 (4): 1756- 1768.
doi: 10.1109/TAES.2018.2875572 |
6 |
CHEN J , XU S Y , CHEN Z P . Convolutional neural network for classifying space target of the same shape by using RCS time series[J]. IET Radar, Sonar and Navigation, 2018, 12 (11): 1268- 1275.
doi: 10.1049/iet-rsn.2018.5237 |
7 |
CAO X M , YI J X , GONG Z P , et al. Data fusion of target characteristic in multistatic passive radar[J]. Journal of Systems Engineering and Electronics, 2021, 32 (4): 811- 821.
doi: 10.23919/JSEE.2021.000070 |
8 |
MICHAEL M , MARTIN U , WOLFGANG K . Ground target tracking with RCS estimation based on signal strength measurements[J]. IEEE Trans.on Aerospace and Electronic Systems, 2016, 52 (1): 205- 220.
doi: 10.1109/TAES.2015.140866 |
9 |
RAJABALIPANAH H , ABODOLALI A . Ultrabroadband monostatic/bistatic RCS reduction via high-entropy phase-encoded polarization conversion metasurfaces[J]. IEEE Antennas Wireless Propagation Letters, 2019, 18 (6): 1233- 1237.
doi: 10.1109/LAWP.2019.2913465 |
10 |
KONG S Y , HU C , WANG R , et al. Insect multifrequency polarimetric radar cross section: experimental results and analysis[J]. IEEE Trans.on Geoscience and Remote Sensing, 2021, 59 (8): 6573- 6585.
doi: 10.1109/TGRS.2020.3025293 |
11 |
NOH Y H , KIM W , TAE H S , et al. RCS Feature extraction using discretized point scatterer with compressive sensing[J]. IEEE Antennas Wireless Propagation Letters, 2021, 20 (2): 165- 168.
doi: 10.1109/LAWP.2020.3042767 |
12 |
GONG J K , YAN J , LI D R , et al. Using radar signatures to classify bird flight modes between flapping and gliding[J]. IEEE Geoscience and Remote Sensing Letters, 2020, 17 (9): 1518- 1522.
doi: 10.1109/LGRS.2019.2949027 |
13 |
CAI X Z , GIALLORENZO M , SARABANDI K . Machine learning-based target classification for MMW radar in autonomous driving[J]. IEEE Trans.on Intelligent Vehicles, 2021, 6 (4): 678- 689.
doi: 10.1109/TIV.2020.3048944 |
14 |
SALSKI B , CUPER J , KOPYT P , et al. Radar cross-section of sports balls in 0.8~40 GHz range[J]. IEEE Sensors Journal, 2018, 18 (18): 7467- 7475.
doi: 10.1109/JSEN.2018.2862142 |
15 |
HE W T , WENG X L , LUO W , et al. Investigation of radar cross-section reduction for dihedral corner reflectors based on camouflage grass[J]. IEEE Antennas and Wireless Propagation Letters, 2021, 20 (12): 2447- 2451.
doi: 10.1109/LAWP.2021.3114302 |
16 |
GAETANO M , ROSARIO D N , GIUSEPPE N , et al. Multifrequency experimental analysis (10 to 77 GHz) on the asphalt reflectivity and RCS of FOD targets[J]. IEEE Geoscience and Remote Sensing Letters, 2017, 14 (9): 1441- 1443.
doi: 10.1109/LGRS.2017.2699282 |
17 | 黄培康, 殷红成, 许小剑. 雷达目标特性[M]. 北京: 电子工业出版社, 2004: 22- 23. |
HUANG P K , YIN H C , XU X J . Radar target characteristics[M]. Beijing: Electronic Industry Press, 2004: 22- 23. | |
18 |
KLEINMAN R E . The Rayleigh region[J]. Proceedings.of the IEEE, 1965, 53 (8): 848- 856.
doi: 10.1109/PROC.1965.4063 |
19 | CRISPIN J W , SIEGEL K M . Methods of radar cross section analysis[M]. New York: Academic Press, 1968: 144- 152. |
20 |
KNOTT E F . A progression of high-frequency RCS prediction techniques[J]. Proceedings.of the IEEE, 1985, 73 (2): 252- 264.
doi: 10.1109/PROC.1985.13137 |
21 |
GUPTA I J , BURNSIDE W D . Physical optics correction for backscattering from curved surfaces[J]. IEEE Trans.on Antennas and Propagation, 1987, 35 (5): 553- 561.
doi: 10.1109/TAP.1987.1144142 |
22 | ZHANG Q, WANG D, ZHOU Y W. A method of RCS mea-surement in the outfield[C]// Proc. of the 3rd World Conference on Mechanical Engineering and Intelligent Manufacturing, 2020. |
23 | WEI G Y, YUAN W Z, GAO F, et al. An accurate monostatic RCS measur ement method based on the extrapolation technique[C]// Proc. of the IEEE 9th International Conference on Communication Software and Networks, 2017: 784-788. |
24 | WALTON E K . IEEE Standard 1502-2007: IEEE recommended practice for radar cross-section test procedures[J]. IEEE Antennas & Propagation Magazine, 2021, 63 (2): 106. |
25 |
VICENTE R . Basic rules for indoor anechoic chamber design[J]. IEEE Antennas and Propagation Magazine, 2016, 58 (6): 82- 93.
doi: 10.1109/MAP.2016.2609821 |
26 | 许小剑. 雷达目标散射特性测量与处理新技术[M]. 北京: 国防工业出版社, 2017: 21- 27. |
XU X J . New techniques for radar target scattering signature measurement and processing[M]. Beijing: National Defense Industry Press, 2017: 21- 27. | |
27 | 张浙东, 黎鑫, 张金鹏, 等. 基于姿态修正的目标RCS动态测量方法[J]. 系统工程与电子技术, 2019, 41 (6): 1242- 1248. |
ZHANG Z D , LI X , ZHANG J P , et al. Dynamic measurement method of target RCS based on attitude correction[J]. Systems Engineering and Electronics, 2019, 41 (6): 1242- 1248. | |
28 | 杨勇, 王雪松, 张文明, 等. 多径环境下海面低空目标检测技术研究[J]. 电波科学学报, 2011, 26 (3): 443- 449. |
YANG Y , WANG X S , ZHANG W M , et al. Detection technology of low-flying target on the sea in multipath environment[J]. Chinese Journal of Radio Science, 2011, 26 (3): 443- 449. | |
29 | 李清亮, 尹志盈, 朱秀芹, 等. 雷达地海杂波测量与建模[M]. 北京: 国防工业出版社, 2017: 142- 143. |
LI Q L , YIN Z Y , ZHU X Q , et al. Measurement and modeling of radar clutter from land and sea[M]. Beijing: National Defense Industry Press, 2017: 142- 143. | |
30 | BECKMANN P, SPIZZICHINO A. Scattering of electromagnetic waves from rough surface[M]. Oxford: Pergamon Press Limited, 1963. |
31 |
LI X , SHUI P L , ZHANG Z D , et al. External calibration of P-band island-based sea clutter measurement radar on the sea surface[J]. IEEE Trans.on Geoscience and Remote Sensing, 2021, 59 (7): 5711- 5720.
doi: 10.1109/TGRS.2020.3023714 |
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