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基于成像提取的RCS精确测量方法研究 被引量:8
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作者 李南京 徐志浩 +2 位作者 胡楚锋 党娇娇 郭淑霞 《仪器仪表学报》 EI CAS CSCD 北大核心 2017年第1期74-82,共9页
高精度雷达散射截面(RCS)测量对背景环境具有较高要求,当背景环境存在较强干扰时,通过背景矢量对消难以消除杂波影响。提出基于成像提取的高精度RCS测量方法,从背景杂波中分离和提取出目标的散射信号,从而提高了测量的精度。首先推导了... 高精度雷达散射截面(RCS)测量对背景环境具有较高要求,当背景环境存在较强干扰时,通过背景矢量对消难以消除杂波影响。提出基于成像提取的高精度RCS测量方法,从背景杂波中分离和提取出目标的散射信号,从而提高了测量的精度。首先推导了像与RCS的数学关系,然后利用转台模式下的测量回波进行成像处理,得到目标区域的二维像;从成像区域中提取目标的二维像,通过波谱变换和定标获得目标的RCS。仿真结果表明,该方法对于具有干扰情况下的RCS测量,可以改善3~5 d B的测试精度,并且能够对弱散射目标进行测量。实验结果表明了成像提取方法的有效性和准确性。 展开更多
关键词 雷达散射截面 微波成像 成像提取 成像分辨率
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绕射波信息提取与成像技术研究——以某盆地海相碳酸盐岩为例 被引量:1
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作者 李学来 张智 +3 位作者 郭希 薛凡 李喆祥 李奇 《矿产与地质》 2021年第1期135-140,共6页
绕射波是提高地震分辨率或超分辨率的重要信息载体,绕射波的提取与成像技术是地震勘探提取小尺度异常体的有效途径。基于传统的反射成像的处理过程没有充分地利用到绕射信息,特别是一些常规处理方法通常对绕射信息有着压制作用。为了进... 绕射波是提高地震分辨率或超分辨率的重要信息载体,绕射波的提取与成像技术是地震勘探提取小尺度异常体的有效途径。基于传统的反射成像的处理过程没有充分地利用到绕射信息,特别是一些常规处理方法通常对绕射信息有着压制作用。为了进一步提高地震资料中绕射波的使用效率,重点研究了在成像道集上采用预测反演算法对绕射波进行提取与成像,并以某盆地海相碳酸盐岩缝洞储层的实际地震资料进行验证。结果显示,就地下小尺度异常体而言,该种绕射波分离成像技术可以较好地将绕射波信息提取出来,对小尺度异常体进行了高精度的重现,具有一定的现实应用价值。 展开更多
关键词 绕射波提取成像 小尺度异常体 成像道集域 预测反演
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线阵CCD在几何量测量中的图像边缘提取方法研究
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作者 阎晓宇 《应用光学》 CAS CSCD 2003年第B08期73-75,87,共4页
介绍线阵CCD在几何量测量中的二值化边缘提取法和模糊成像提取法,并对影响系统测量分辨率的一些因素作了分析,提出了相关的建议。
关键词 线阵CCD 几何量测量 图像边缘提取 二值化边缘提取 模糊成像提取 电荷耦合器件
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Water bodies extraction from TM images
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作者 杜先荣 《Journal of Measurement Science and Instrumentation》 CAS 2014年第3期48-52,共5页
Aiming at the problems of high time-consuming, low accuracy and weak versatility of the existing methods of wa- ter extraction based on TM image, this paper combines principal component analysis (PCA) with the modif... Aiming at the problems of high time-consuming, low accuracy and weak versatility of the existing methods of wa- ter extraction based on TM image, this paper combines principal component analysis (PCA) with the modified normalized difference water index (MNDWI) which was improved by XU Han-qiu to construct a false color composite image that could separate water from others easily. This method can realize the water extraction based on TM image by analyzing the spectral characteristics of water in this false color image and establishing a water extraction model. This paper also compares the effi- ciency of this method with MNDWI, (TM2 + TM3) - (TM4 + TM5) and new water index (NWI), which were applied in the city and mountain of Taiyuan, respectively. The results show that the proposed method can extract water body from TM im- age more rapidly and efficiently and its accuracy is up to 94.03 %. In addition, this method does not require a manual selec- tion threshold, which meets the research reuuirement of high automaticm. 展开更多
关键词 TM image water extraction principal component analysis (PCA) modified normalized difference water index(MNDWI)
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Non-contact Acoustic Contour Imaging Method Using Phase Difference in Extremely Shallow Underground
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作者 Tsuneyoshi Sugimoto Ryo Akamatsu Touma Abe 《Journal of Energy and Power Engineering》 2012年第12期2010-2017,共8页
Buried object which exists at extremely shallow underground can be detected by using an acoustic vibration and a SLDV (scanning laser Doppler vibrometer). Non-contact acoustic exploration can be realized by using ai... Buried object which exists at extremely shallow underground can be detected by using an acoustic vibration and a SLDV (scanning laser Doppler vibrometer). Non-contact acoustic exploration can be realized by using air coupled sound. It was confirmed that discovery and the identification of a buried thing were possible using the OFR method (optimum frequency range method). However, in this method, only the amplitude of the vibration speed spectrum is used and did not use the phase information. Therefore a new imaging method is proposed that used the phase information of the vibration speed spectrum. From the experimental results, the possibility of the outline extraction by using the phase difference between each scan point is confirmed. As a future task, the phase difference image will become clearer by changing the scan point density and long duration time of emitted wave. 展开更多
关键词 Phase difference non-contact acoustic exploration contour imaging scanning laser Doppler vibrometer optimumfrequency range.
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