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The optimal fractional S transform of seismic signal based on the normalized second-order central moment

机译:基于归一化二阶中心矩的地震信号最优分数S变换

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摘要

As the extension of time-bandwidth product (TBP) in the fractional domain, the generalized time-bandwidth product (GTBP) provides a rotation-independent measure of compactness. A new fractional S transform (FrST) is proposed to avoid missing the physical meaning of the fractional time-frequency plane. FrST is based on the GTBP criterion and the time-frequency rotation property of fractional Fourier transform (FrFT). In addition, we introduce the normalized second-order central moment (NSOCM) calculation method to determine the optimal order. The optimal order searching process can be converted into the NSOCM calculation. Compared with TBP search algorithms, the NSOCM approach has higher computational efficiency. The qualitative advantage of the NSOCM approach in the optimal order selection is demonstrated by a series of model tests. The optimal FrST based on NSOCM (OFrST) can produce more compact time-frequency support than the S transform. The real seismic data spectral decomposition results show that the proposed algorithm can obtain single-frequency visualization with better time-frequency concentration, thereby enhancing the precision of reservoir prediction. (C) 2016 Elsevier B.V. All rights reserved.
机译:作为分数域中时间带宽积(TBP)的扩展,广义时间带宽积(GTBP)提供了与旋转无关的紧凑性度量。提出了一种新的分数S变换(FrST),以避免遗漏分数时频平面的物理含义。 FrST基于GTBP准则和分数阶傅里叶变换(FrFT)的时频旋转特性。另外,我们引入归一化二阶中心矩(NSOCM)计算方法来确定最佳阶。最佳订单搜索过程可以转换为NSOCM计算。与TBP搜索算法相比,NSOCM方法具有更高的计算效率。通过一系列模型测试证明了NSOCM方法在最佳订单选择方面的质量优势。与S变换相比,基于NSOCM的最优FrST(OFrST)可以产生更紧凑的时频支持。实际地震数据频谱分解结果表明,所提算法能获得时频集中较好的单频可视化,从而提高了储层预测精度。 (C)2016 Elsevier B.V.保留所有权利。

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