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基于BOS技术的气动光学流场传输效应成像偏移校正方法研究 被引量:3
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作者 丁浩林 易仕和 +2 位作者 吴宇阳 张锋 何霖 《红外与激光工程》 EI CSCD 北大核心 2018年第4期199-206,共8页
高速成像制导导弹在大气中飞行时,受到气动光学效应的影响,目标成像位置与其实际位置之间出现偏差。实现对气动光学效应成像偏移校正,对于提高制导精度意义重大。气动光学效应成像偏移具有很强的随机性和非线性,校正起来十分困难。通过... 高速成像制导导弹在大气中飞行时,受到气动光学效应的影响,目标成像位置与其实际位置之间出现偏差。实现对气动光学效应成像偏移校正,对于提高制导精度意义重大。气动光学效应成像偏移具有很强的随机性和非线性,校正起来十分困难。通过利用背景纹影技术测量光线穿过变折射率场后的光线偏移量,建立畸变图像与参考图像之间的控制点对,采用局部加权平均拟合方法构建用于图像校正的映射函数,利用双三次卷积方法对图像灰度值进行重采样处理,完成对畸变图像的校正。分别对固定相位物(透镜)和喷流马赫数3.0的超声速气膜引起的成像偏移进行校正,实验结果验证了校正方法的有效性。 展开更多
关键词 成像偏移校正 气动光学 背景纹影 本征正交分解 互相关
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Prestack migration velocity analysis based on simplified two-parameter moveout equation 被引量:1
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作者 陈海峰 李向阳 +2 位作者 钱忠平 宋建军 赵桂玲 《Applied Geophysics》 SCIE CSCD 2016年第1期135-144,220,221,共12页
Stacking velocity V_(C2),vertical velocity ratio γ_0,effective velocity ratio γ_(eff),and anisotropic parameter x_(eff) are correlated in the PS-converted-wave(PS-wave) anisotropic prestack Kirchhoff time mi... Stacking velocity V_(C2),vertical velocity ratio γ_0,effective velocity ratio γ_(eff),and anisotropic parameter x_(eff) are correlated in the PS-converted-wave(PS-wave) anisotropic prestack Kirchhoff time migration(PKTM) velocity model and are thus difficult to independently determine.We extended the simplified two-parameter(stacking velocity V_(C2) and anisotropic parameter k_(eff)) moveout equation from stacking velocity analysis to PKTM velocity model updating and formed a new four-parameter(stacking velocity V_(C2),vertical velocity ratio γ_0,effective velocity ratio γ_(eff),and anisotropic parameter k_(eff)) PS-wave anisotropic PKTM velocity model updating and process flow based on the simplified twoparameter moveout equation.In the proposed method,first,the PS-wave two-parameter stacking velocity is analyzed to obtain the anisotropic PKTM initial velocity and anisotropic parameters;then,the velocity and anisotropic parameters are corrected by analyzing the residual moveout on common imaging point gathers after prestack time migration.The vertical velocity ratio γ_0 of the prestack time migration velocity model is obtained with an appropriate method utilizing the P- and PS-wave stacked sections after level calibration.The initial effective velocity ratio γ_(eff) is calculated using the Thomsen(1999) equation in combination with the P-wave velocity analysis;ultimately,the final velocity model of the effective velocity ratio γ_(eff) is obtained by percentage scanning migration.This method simplifies the PS-wave parameter estimation in high-quality imaging,reduces the uncertainty of multiparameter estimations,and obtains good imaging results in practice. 展开更多
关键词 PS-converted-wave PKTM velocity updating two-parameter moveout equation migration imaging
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