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Convergence Rate of FUll Wavefield Inversion Using Spectral Shaping

机译:基于谱整形的FUll波场反演的收敛速度

摘要

Method for speeding up iterative inversion of seismic data (106) to obtain a subsurface model (102), using local cost function optimization. The frequency spectrum of the updated model at each iteration is controlled to match a known or estimated frequency spectrum for the subsurface region, preferably the average amplitude spectrum of the subsurface P-impedance. The controlling is done either by applying a spectral-shaping filter to the source wavelet (303) and to the data (302) or by applying the filter, which may vary with time, to the gradient of the cost function (403). The source wavelet's amplitude spectrum (before filtering) should satisfy D(f)=fIp(f)W(f), where f is frequency, D(f) is the average amplitude spectrum of the seismic data, and Ip(f) is the average amplitude spectrum for P-impedance in the subsurface region (306,402) or an approximation thereof.
机译:利用局部成本函数优化,加快地震数据( 106 )迭代反演以获得地下模型( 102 )的方法。控制每次迭代时更新模型的频谱,以匹配地下区域的已知频谱或估计频谱,最好是地下P阻抗的平均幅度频谱。通过对源子波( 303 )和数据( 302 )应用频谱整形滤波器或通过应用滤波器来完成控制,该滤波器可能会随时间到成本函数( 403 )的梯度。源小波的振幅谱(滤波前)应满足D(f)= fI p (f)W(f),其中f为频率,D(f)为地震的平均振幅谱I p (f)是次区域( 306,402 )或其近似值中P阻抗的平均幅度谱。

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