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Method for improving the accuracy of ocean bottom reflectivity estimations using the inverse backus filter

机译:利用反向backus滤波器提高海底反射率估计精度的方法

摘要

A method for determining ocean bottom reflectivities from dual sensor seismic data, whereby a first time windowed pressure signal and a first windowed velocity signal are summed to generate a first summed signal, and a second time windowed pressure signal and a second time windowed velocity signal are summed to generate a second summed signal. The first summed signal and the second summed signal are transformed from the time domain to the frequency domain to generate a first transformed sum and a second transformed sum, respectively. A value R for said ocean bottom reflectivity is selected and used to calculate an inverse Backus filter (1+Rz).sup.2, where Z is the Z-transform of the two-way travel time delay filter. The first transformed sum and the second transformed sum are multiplied by the inverse Backus filter to generate a first filtered sum and a second filtered sum, respectively. A cross spectrum is calculated from the first filtered sum and the second filtered sum to generate a trial cross spectrum. An optimization algorithm is applied to the trial cross spectrum to determine the ocean bottom reflectivity.
机译:一种从双传感器地震数据确定海底反射率的方法,其中将第一时间窗压力信号和第一窗口速度信号求和以产生第一求和信号,并且将第二时间窗压力信号和第二时间窗速度信号求和求和以产生第二求和信号。将第一求和信号和第二求和信号从时域变换到频域,以分别生成第一变换和和第二变换和。选择用于所述海底反射率的值R,并且将其用于计算Backus逆滤波器(1 + Rz)sup.2,其中Z是双向行进时间延迟滤波器的Z变换。将第一变换和与第二变换和乘以反向Backus滤波器,以分别生成第一滤波和和第二滤波和。从第一滤波后的和和第二滤波后的和计算出交叉谱以产生试验交叉谱。将优化算法应用于试验交叉光谱,以确定海底反射率。

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