Research Status and Progress of Multiples Suppression Based on Radon Transform

G. Wang
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Abstract

The existence of multiple waves in seismic data has a substantial impact on earthquake imaging, inversion, and interpretation results. As a result, multiples are often suppressed as noise prior to seismic data preattack processing. Currently, there are two primary methods for suppressing multiple reflections in seismic data. One is a filtering technique based on geometric differences in the seismic waves, while the other is based on wave equation methods. The Radon transform, which suppresses multiple reflections, belongs to the class of geometric seismic diffraction filtering techniques. In the process of seismic data processing, it effectively separates multiple reflections from seismic data by utilizing the characteristic differences between primary and multiple reflections, thereby achieving noise attenuation and improving the signal-to-noise ratio of the data. This article primarily investigates the current state of methods for suppressing multiple reflections based on the Radon transform, both domestically and internationally. By introducing various forms and fundamental principles of the Radon transform, this study analyzes and compares the adaptability and pros and cons of each type of Radon transform. The high-precision Radon transform can effectively address the sawtooth phenomenon and energy dispersion issues that arise in the least-squares Radon transform. It also highlights the challenges associated with suppressing multiple reflections in the Radon transform and provides a glimpse into future developments.
基于Radon变换的多重抑制研究现状与进展
地震资料中多波的存在对地震成像、反演和解释结果有很大影响。因此,在地震数据预攻击处理之前,多次波通常作为噪声被抑制。目前,抑制地震资料中多重反射的方法主要有两种。一种是基于地震波几何差异的滤波技术,另一种是基于波动方程方法的滤波技术。Radon变换是一种抑制多重反射的几何地震衍射滤波技术。在地震资料处理过程中,利用一次反射与多次反射的特征差异,有效地将地震资料中的多次反射分离出来,从而达到消噪的目的,提高了资料的信噪比。本文主要研究了国内外基于Radon变换的多重反射抑制方法的现状。通过介绍Radon变换的各种形式和基本原理,分析比较了各种Radon变换的适应性和优缺点。高精度Radon变换可以有效地解决最小二乘Radon变换中出现的锯齿现象和能量色散问题。它还强调了在Radon变换中抑制多重反射所面临的挑战,并提供了对未来发展的一瞥。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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