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Attenuation-compensated reverse time migration of GPR data constrained by resistivity
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作者 Wang Hong-Hua Xi Yu-He +1 位作者 Lv Yu-Zeng Wang Yu-Cheng 《Applied Geophysics》 SCIE CSCD 2022年第4期563-571,604,605,共11页
The high-frequency electromagnetic waves of ground-penetrating radar(GPR)attenuate severely when propagated in an underground attenuating medium owing to the influence of resistivity,which remarkably decreases the res... The high-frequency electromagnetic waves of ground-penetrating radar(GPR)attenuate severely when propagated in an underground attenuating medium owing to the influence of resistivity,which remarkably decreases the resolution of reverse time migration(RTM).As an effective high-resolution imaging method,attenuation-compensated RTM(ACRTM)can eff ectively compensate for the energy loss caused by the attenuation related to media absorption under the influence of resistivity.Therefore,constructing an accurate resistivity-media model to compensate for the attenuation of electromagnetic wave energy is crucial for realizing the ACRTM imaging of GPR data.This study proposes a resistivity-constrained ACRTM imaging method for the imaging of GPR data by adding high-density resistivity detection along the GPR survey line and combining it with its resistivity inversion profile.The proposed method uses the inversion result of apparent resistivity data as the GPR RTM-resistivity model for imposing resistivity constraints.Moreover,the hybrid method involving image minimum entropy and RTM is used to estimate the medium velocity at the diff raction position,and combined with the distribution characteristics of the reflection in the GPR profile,a highly accurate velocity model is built to improve the imaging resolution of the ACRTM.The accuracy and eff ectiveness of the proposed method are verified using the ACRTM test of the GPR simulated data of a typical attenuating media model.On this basis,the GPR and apparent resistivity data were observed on a field survey line,and use the GPR resistivity-constrained ACRTM method to image the observed data.A comparison of the proposed method with the conventional ACRTM method shows that the proposed method has better imaging depth,stronger energy,and higher resolution,and the obtained results are more conducive for subsequent data analysis and interpretation. 展开更多
关键词 Ground-penetrating Radar attenuation compensated reverse time migration resistivity constrained high-density resistivity method minimum entropy method
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基于速度移动窗的最小熵法在GPR逆时偏移中的应用
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作者 席宇何 王洪华 +1 位作者 王欲成 吴祺铭 《物探与化探》 CAS 北大核心 2023年第5期1250-1260,共11页
速度是决定探地雷达(GPR)偏移成像分辨率的关键参数,基于图像最小熵与偏移相结合的方法通常将整体偏移剖面作为固定窗计算熵值曲线来估计介质速度,不但难以适用于介质非均匀分布情况,而且试速度过大或过小均会使双曲线绕射波的收敛位置... 速度是决定探地雷达(GPR)偏移成像分辨率的关键参数,基于图像最小熵与偏移相结合的方法通常将整体偏移剖面作为固定窗计算熵值曲线来估计介质速度,不但难以适用于介质非均匀分布情况,而且试速度过大或过小均会使双曲线绕射波的收敛位置溢出固定窗,降低估计精度。为此,本文利用试速度精确控制偏移剖面中的计算窗,提出了一种基于速度移动窗的最小熵法,并与逆时偏移相结合,估计最佳偏移速度。该方法通过试速度自动调整计算窗位置,可使双曲线绕射波收敛位置始终位于计算窗中心,从而获得稳定、准确的熵值曲线。将一条典型双曲线绕射波的固定窗和速度移动窗最小熵法的计算结果作对比,验证了速度移动窗的最小熵法的正确性和有效性。数值试验和实测数据测试表明:与固定窗最小熵法相比,速度移动窗的最小熵法可将双曲线绕射波收敛位置精确固定于计算窗中心,熵值曲线更稳定,计算量更小,偏移速度估计精度更高,逆时偏移成像效果更好。 展开更多
关键词 探地雷达 速度移动窗 最小熵法 逆时偏移
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云计算环境下软硬件节能和负载均衡策略 被引量:12
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作者 钱育蓉 于炯 +3 位作者 王卫源 孙华 廖彬 杨兴耀 《计算机应用》 CSCD 北大核心 2013年第12期3326-3330,共5页
针对云计算服务环境下软硬件节能和负载均衡优化问题,提出一种自适应的云计算环境下虚拟机(VM)动态迁移软节能策略。该策略采用常用的硬件能耗感知技术———动态电压频率调节(DVFS)来实现分段优化的系统部件静态节能,又通过VM在线迁移... 针对云计算服务环境下软硬件节能和负载均衡优化问题,提出一种自适应的云计算环境下虚拟机(VM)动态迁移软节能策略。该策略采用常用的硬件能耗感知技术———动态电压频率调节(DVFS)来实现分段优化的系统部件静态节能,又通过VM在线迁移技术实现云平台的动态自适应软件节能。在CloudSim云仿真平台下对比实现DVFS静态节能和自适应负载均衡的软节能策略,经PlanetLab云平台监测数据验证,结果表明:软硬结合的自适应能耗感知策略能够高效节能96%;DVFS+MAD_MMT节能策略(采用平均绝对偏差算法判定主机是否超载,基于最短迁移时间(MMT)原则选择VM移出)在PlanetLab低负载云任务吞吐环境下比实验环境下能节约87.15%的能耗;安全阈值为2.5的MAD_MMT算法可以实现云环境下的高效软节能,有效支持自适应负载均衡的虚拟机动态迁移策略。 展开更多
关键词 动态电压频率调节 虚拟机迁移 CloudSim仿真 软节能 最短迁移时间
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