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提高毫米波近程探测雷达距离跟踪精度新算法

黄骏 何培宇 高勇 李任科

黄骏, 何培宇, 高勇, 李任科. 提高毫米波近程探测雷达距离跟踪精度新算法[J]. 电子与信息学报, 2010, 32(12): 2854-2860. doi: 10.3724/SP.J.1146.2009.01584
引用本文: 黄骏, 何培宇, 高勇, 李任科. 提高毫米波近程探测雷达距离跟踪精度新算法[J]. 电子与信息学报, 2010, 32(12): 2854-2860. doi: 10.3724/SP.J.1146.2009.01584
Huang Jun, He Pei-Yu, Gao Yong, Li Ren-Ke. A Novel Algorithm for Improving Range-tracking Accuracy of Short-range Millimeter Wave Radar[J]. Journal of Electronics & Information Technology, 2010, 32(12): 2854-2860. doi: 10.3724/SP.J.1146.2009.01584
Citation: Huang Jun, He Pei-Yu, Gao Yong, Li Ren-Ke. A Novel Algorithm for Improving Range-tracking Accuracy of Short-range Millimeter Wave Radar[J]. Journal of Electronics & Information Technology, 2010, 32(12): 2854-2860. doi: 10.3724/SP.J.1146.2009.01584

提高毫米波近程探测雷达距离跟踪精度新算法

doi: 10.3724/SP.J.1146.2009.01584
基金项目: 

国家部委基金资助课题

A Novel Algorithm for Improving Range-tracking Accuracy of Short-range Millimeter Wave Radar

  • 摘要: 该文针对毫米波近程探测雷达在短时间信号积累条件下对空间弱目标进行距离跟踪时,存在的测距精度低与抗干扰能力差的问题,提出了一种多重自相关重构算法。该算法通过将差拍数据进行不同方式排列后获取的自相关信息进行多重融合,之后再对重构出的自相关序列进行距离谱分析,进而获取距离信息。这样可在抑制干扰的同时,实现目标距离跟踪分辨率的二的指数次方倍的增加,并且它可在传统算法无法工作的低信噪比条件下,实现高精度测距。仿真实验验证了理论分析的结果和算法的有效性。
  • Guan Fu-hong, Yang Ming-hui, and Xu Jie. A high sensibility wideband millimeter wave receiver for imaging concealed objects application[C]. The 6th European Radar Conference, Rome, Italy, Sep.30-Oct.2, 2009: 826-829.[2]Yu Xiao-zheng, Shen Zhi-gang, and Cai Chu-jiang. Millimeter wave electromagnetic interference shielding by coating expanded polystyrene particles with a copper film using magnetron sputte-ring[J].Vacuum.2009, 83(12):1438-1441[3]Yu Xian-bin, Zheng Xiao-ping, and Zhang Han-yi. Polarization state rotation filter for optical generation of continuously tunable millimeter-wave signal employing an external intensity modulator [J].Optical Fiber Technology.2007, 13(1):56-61[4]Wang Wen-qin, Peng Qi-cong, and Cai Jing-ye. Waveform- diversity-based millimeter-wave UAV SAR remote sensing [J].IEEE Transactions on Geoscience and Remote Sensing.2009, 47(3):691-700[5]Skolnik M L. Radar Handbook [M]. New York: Mcgraw-Hill, 1995: 500-520.[6]Gonzalez-partida J T, Almorox G P, and Burgos G M, et al.. Through-the-wall surveillance with millimeter-wave LFMCW radars[J].IEEE Transactions on Geoscience and Remote Sensing.2009, 47(6):1796-1805[7]Ko Hao-hsien, Cheng Kai-wen, and Su Hsuan-jung. Range resolution improvement for FMCW radars[C]. 2008 IEEE Radar Conference, Rome, Italy, Oct.30-31, 2008: 352-355.[8]赵迎辉, 王岩飞. 基于Chirp-Z变换的分布式SAR地面运动目标检测方法[J].电子与信息学报.2008, 30(5):1056-1059浏览Zhao Ying-hui and Wang Yan-fei. A new GMTI method based on chirp-z transform for distribu-ted satellites interferometric SAR [J].Journal of Electronics Information Technology.2008, 30(5):1056-1059[9]陈祝明, 丁义元, 向敬成. 采用Chirp-Z变换提高LFMCW雷达的测距离精度[J]. 信号处理, 2002, 18(2): 110-112.Chen Zhu-ming, Ding Yi-yuan, and Xiang Jing-cheng. Improving range precision of LFMCW radar by chirp-z transform [J]. Signal Processing, 2002, 18(2): 110-112.[10]胡文. 提高LFMCW雷达高度表测高精度的方法研究[D]. [硕士论文], 西安: 西安电子科技大学, 2006.[11]Hu Wen. Method of improving the precision of height measurement in LFMCW radar Altimete [D]. [MA. dissertation], Xian: Xian Electronics Science and Technology University, 2006.[12]王春艳. 噪声对Chirp-Z变换的LFMCW系统测距算法的影响[J]. 中国雷达, 2008, 2: 39-41.[13]Wang Chun-yan. Noise effect on LFMCW ranging radar by chirp-z transform [J]. China Radar, 2008, 2: 39-41.[14]张红, 王晓红, 郭昕. 提高线性调频连续波雷达测距精度的ZFFT算法[J].航天电子对抗.2006, 22(1):48-51Zhang Hong, Wang Xiao-hong, and Guo Xin. Improving range measuring precision of LFMCW radar using ZFFT method[J]. Aerospace Electronic Warfare, 2006, 22(1): 48-51.[15]陈祝明, 丁义元, 向敬成. 线性调频连续波雷达扫频功率起伏对其测距精度和距离分辨力的影响[J].电子与信息学报.2000, 22(1):170-173浏览Chen Zhu-ming, Ding Yi-yuan, and Xiang Jing-cheng. The effects of power undulation in frequency sweep on the range precision and range resolution of LFMCW radar[J].Journal of Electronics Information Technology.2000, 22(1):170-173[16]孟建. 分段采样信号的相位关联技术[J].系统工程与电子技术.2004, 26(12):1784-1786Meng Jian. Phase association method of multisection sampled data [J]. Systems Engineering and Electronic, 2004, 26(12): 1784-1786.
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出版历程
  • 收稿日期:  2009-12-11
  • 修回日期:  2010-07-13
  • 刊出日期:  2010-12-19

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