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DETECTION ON MICRO-DOPPLER EFFECT BASED ON LASER COHERENT RADAR 被引量:3
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作者 SunYang ZhangJun 《Journal of Electronics(China)》 2012年第1期56-61,共6页
A laser coherent detection system of 1550 nm wavelength was presented, and experimen- tal research on detecting micro-Doppler effect in a dynamic target was developed. In the study, the return signal in the time domai... A laser coherent detection system of 1550 nm wavelength was presented, and experimen- tal research on detecting micro-Doppler effect in a dynamic target was developed. In the study, the return signal in the time domain is decomposed into a set of components in different wavelet scales by multi-resolution wavelet analysis, and the components are associated with the vibrational motions in a target. Then micro-Doppler signatures are extracted by applying the reconstruction. During the course of the final data processing frequency analysis and time-frequency analysis are applied to analyze the vibrationM signals and estimate the motion parameters successfully. The experimental results indicate that the system can effectively detect micro-Doppler information in a moving target, and the tiny vibrational signatures also can be acquired effectively by wavelet multi-resolution analy- sis and time-frequency analysis. 展开更多
关键词 micro-doppler effect Laser coherent radar Multi-resolution analysis Time-frequencyanalysis
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Modeling simulation and experiment of micro-Doppler signature of precession 被引量:2
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作者 Hongwei Gao Lianggui Xie Shuliang Wen 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2010年第4期544-549,共6页
Spatial precession is a special micro-motion of the spinning-directional target, and the micro-Doppler signature of the cone-shaped target with precession is studied. The micro-motion model of precession is built firs... Spatial precession is a special micro-motion of the spinning-directional target, and the micro-Doppler signature of the cone-shaped target with precession is studied. The micro-motion model of precession is built first, and then the micro-Doppler model is developed based on the proposed concept of micro-motion ma- trix, by which the theoretical formula of micro-Doppler signature of precession is derived. In order to further approach to the actual case, the occlusion effect is firstly considered in micro-Doppler, and the simulated result with occlusion effect is well in accordance with the measured result in microwave anechoic chamber, which suggests that the micro-motion model and micro-Doppler model of precession are both valid. 展开更多
关键词 PRECESSION micro-doppler micro-motion matrix occlusion effect.
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Angular extent effect of micromotion target in SAR image by polar format algorithm 被引量:1
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作者 Bin Deng Yuliang Qin +1 位作者 Hongqiang Wang Yanpeng Li 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2014年第3期428-433,共6页
Target micromotion not only plays an important role in target recognition but also leads to esoteric characteristics in synthetic aperture radar (SAR) imaging. This paper finds out an interesting phenomenon, i.e. th... Target micromotion not only plays an important role in target recognition but also leads to esoteric characteristics in synthetic aperture radar (SAR) imaging. This paper finds out an interesting phenomenon, i.e. the angular extent effect, in micro-motion target images formulated by the polar format algorithm. A micromotion target takes on multiple pairs of paired echoes (PEs) around the true point, and each PE extends for an angle which is exactly equal to the angular extent of the synthetic aperture, regardless of the micromotion frequency. The effect is derived and interpreted by using the characteristics of Bessel functions. Then it is demonstrated by simulation experiments of a target with different micromotion frequencies. The revelation and interpretation of the effect is highly beneficial to micromotion-target SAR image understanding as wel as target recognition. 展开更多
关键词 synthetic aperture radar (SAR) MICROMOTION micro-doppler polar format algorithm (PFA) angular extent effect.
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正弦调频Fourier-Bessel变换及其在微动目标特征提取中的应用 被引量:7
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作者 何其芳 张群 +1 位作者 罗迎 李开明 《雷达学报(中英文)》 CSCD 北大核心 2018年第5期593-601,共9页
针对微动目标特征提取问题,该文提出了一种正弦调频Fourier-Bessel变换(Sinusoidal Frequency Modulation Fourier-Bessel Transform, SFMFBT),并基于SFMFBT提出了一种雷达目标微动频率的精确提取方法。首先给出了SFMFBT的定义,分析了... 针对微动目标特征提取问题,该文提出了一种正弦调频Fourier-Bessel变换(Sinusoidal Frequency Modulation Fourier-Bessel Transform, SFMFBT),并基于SFMFBT提出了一种雷达目标微动频率的精确提取方法。首先给出了SFMFBT的定义,分析了变换的相关性质,并通过频率提取误差分析给出了一种修正方法,最后讨论了离散信号处理中的若干问题。相比于傅里叶-贝塞尔变换,SFMFBT将k分辨率参数引入Bessel函数基,克服了其对应频率不可细分的缺陷,并且通过误差分析提高了信号分解精度,从而将Bessel函数基引入特征提取领域,拓展了其应用范围。仿真结果表明该方法同样适用于微动群目标频率提取与回波分离重构,且在SNR>0 dB条件下具有较好的鲁棒性。 展开更多
关键词 微多普勒 特征提取 群目标 正弦调频Fourier-Bessel变换(SFMFBT)
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