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Frequency-space wavefield extrapolation using infinite impulse response digital filters: is it feasible?

机译:使用无限脉冲响应数字滤波器的频空波场外推法:是否可行?

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The purpose of this paper is to study the possibility of performing practically stable and efficient frequency-space (f - x) wavefield extrapolation for the application of seismic imaging and datuming via infinite impulse response (IIR) filters. The model reduction control theory was adopted to design such IIR f - x extrapolation filters. The model reduction theory reduces the order of a given order system which, in this case, involves reducing a finite impulse response (FIR) f - x extrapolation filter system into an IIR f - x extrapolation filter system. This theory relies on decomposing the states of the given filter system into strong and weakly coupled sub-systems, and then eliminating the weakly coupled states via singular value decomposition of the Hankel and the impulse response Gramian matrices. Simulation results indicate that IIR f - x filters can be obtained, which are stable from an IIR filter design point of view. Simulations also indicate that stable seismic impulse responses and synthetics can be obtained with a reduced system model order and, hence, less computational efforts with respect to the number of complex multiplications and additions per output sample. It is hoped that this study will open new possibilities for researchers to reconsider designing IIR f - x explicit depth extrapolation filters due to their expected computational savings and wavenumber response accuracy, when compared to the FIR f - x explicit depth extrapolation filters.
机译:本文的目的是研究通过无限冲激响应(IIR)滤波器进行实用稳定,有效的频空间(f-x)波场外推,以便在地震成像和基准测量中应用的可能性。采用模型约简控制理论来设计这种IIR f-x外推滤波器。模型简化理论可简化给定阶次系统的阶次,在这种情况下,该阶次涉及将有限脉冲响应(FIR)f-x外推滤波器系统简化为IIR f-x外推滤波器系统。该理论依赖于将给定滤波器系统的状态分解为强耦合子系统和弱耦合子系统,然后通过Hankel的奇异值分解和脉冲响应Gramian矩阵消除弱耦合状态。仿真结果表明,可以获得IIR f -x滤波器,从IIR滤波器设计的角度来看,它们是稳定的。仿真还表明,可以通过降低的系统模型阶数获得稳定的地震脉冲响应和合成信号,因此,就每个输出样本而言,复杂乘法和加法的数量所需的计算量更少。希望与FIR f-x显式深度外推滤波器相比,由于预期的计算节省和波数响应精度,该研究将为研究人员重新考虑设计IIR f-x显式深度外推滤波器提供新的可能性。

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