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1.
基于标准协方差极化滤波方法(SCM),由于其物理意义明确、易于实现、计算效率较高,在多分量地震处理中发挥着重要的作用。但该方法的时窗长度选择完全依赖于经验判断,不可避免地会出现解释上的人为影响。基于此,对协方差矩阵的分析时窗进行改进,时窗的长度自适应于三分量地震记录的瞬时频率,实现了自适应协方差极化滤波方法(ACM)。模型数据及实际三分量台站地震数据处理结果表明,ACM对局部变化比较剧烈的信号更加敏感,极大提高了滤波精度。  相似文献   

2.
极化分析方法在多分量地震资料处理中起着举足轻重的作用,当波形初至很接近时,利用常规的时间域极化分析方法刻画不同波型的极化分布就变得比较困难了.基于此,在广义S变换时频方法的基础上,实现了一种时频域瞬时极化滤波方法.该方法根据多分量信号的时频谱及瞬时相位来计算瞬时极化参数(极化轴、极化率、平面化向量等).结合了时频分析方法的优势,在波形识别方面更加准确.通过极化率可以识别并分离线性极化波和椭圆及圆形极化波,通过平面化向量与各分量之间的夹角大小,定性识别平面波和非平面波.模型勘探数据及实际三分量台站地震数据处理结果表明,时频域瞬时极化滤波方法在波场分离及非平面波压制等方面具有一定的实用性.  相似文献   

3.
针对陆上三分量地震资料去噪处理中面临的面波噪声能量强、有效信号能量弱、转换波与面波主频叠置、非矢量保真处理等问题,本文基于多分量数据中有效信号与强面波噪声在极化属性、振幅能量、视速度三方面的特征差异,提出了一种时频域压制多分量数据强面波的去噪方法,并设计了相应的矢量滤波器。该方法利用小波变换将地震信号变换到时频域,并基于时频域瞬时极化率公式计算出各点极化率参数,然后根据面波视速度划分出有效信号区和面波噪声区,并据此对有效信号进行能量均值统计,最后联合极化率、能量、频率特征对噪声识别和分频、分区压制。理论模型和实际资料处理验证了本文方法的正确性和有效性,为解决低信噪比陆上多分量资料面波压制提供了又一种有效手段。  相似文献   

4.
主动源探测中源检距较大的接收台站,由于信号能量较弱及各种干扰的存在,有效信号湮灭于干扰信号之中,导致信噪比降低。利用S变换时频域滤波方法分别对一维、二维加噪数据进行数值模拟计算,发现该方法可对随机信号进行有效识别,输出信号与原始信号互相关程度提高。再将此方法与频率滤波方法应用于宾川主动源高兴台数据处理中,结果表明:S变换时频域滤波方法能够在主动源资料处理中对噪声形成有效压制,提高地震信号信噪比,且效果优于频率域滤波方法。  相似文献   

5.
微地震信号的变速FK滤波-自适应极化滤波方法   总被引:2,自引:1,他引:1       下载免费PDF全文
针对微地震信号的特点,研究了变速FK滤波-自适应极化滤波方法.在设计FK滤波因子时,通过计算相邻道滑动时窗内信号的互相关系数,确定时窗内信号的视速度范围,实现变速FK滤波;对时窗内的信号进行二维FFT变换时,分别在时窗的纵横向上补零充位,消除信号在二维变换时造成的时空域的混跌和泄漏;在设计自适应极化滤波因子时,针对复杂波场中波的偏振方向的不确定性问题,本文通过计算相邻道信号偏振投影的最大互相关系数,确定波的跟踪分量;把波的跟踪分量作为极化滤波因子里的期望方向,改进常规滤波因子,实现自适应极化滤波.对理论模型和实际资料的处理结果表明,该方法理论正确,实际资料的处理效果也得到了明显的改善.  相似文献   

6.
随机噪声的影响在地震勘探中是不可避免的,常规的随机噪声压制方法在处理中往往会破坏具有时空变化特征的非平稳有效地震信号,影响地震数据的准确成像.当前油气勘探的目标已经转变为“两宽一高”,随着数据量的增大,对去噪方法的处理效率也提出了更高的要求.因此,开发高效的非平稳地震数据随机噪声压制方法具有重要意义.预测滤波技术广泛用于地震随机噪声的衰减,本文基于流式处理框架提出一种新的f-x域流式预测滤波方法,通过在频率域建立预测自回归方程,运用直接复数矩阵逆运算代替迭代算法求解非平稳滤波器系数,实现时空变地震同相轴预测,提高自适应预测滤波的计算效率.通过与工业标准的FXDECON方法和f-x域正则化非平稳自回归(RNA)方法进行对比,理论模型和实际数据的测试结果表明,提出的f-x域流式预测滤波方法能更好地平衡时空变有效信号保护、随机噪声压制和高效计算三者之间的关系,获得合理的处理效果.  相似文献   

7.
三分量地震资料包含着丰富的运动学和动力学信息,各种随机噪声的存在严重降低了资料的信噪比,给有效信息的提取带来了一定的困难.本文在引入多窗谱分析方法的基础上,通过对谱密度矩阵特征问题的求解提取三分量地震记录的偏振参数,实现频率域偏振分析;根据所求得的偏振参数以及随机噪声和有效信号的偏振特性差异,设计相应的自适应滤波器,通过该滤波器的滤波作用,最终实现压制随机噪声的目的.  相似文献   

8.
给出了一种3分量地震数据偏振分析的技术,并将其应用到人工地震勘探信号的提取中。该技术基于时域算法,通过对协方差矩阵的本征分析,在滑动时间窗内计算偏振特性,由偏振椭圆导出表征质点运动的各种属性,并利用质点运动的特征构建偏振滤波器。本文对3分量合成地震记录和野外探测实验的实际3分量记录进行偏振分析研究,并在此基础上进行偏振滤波,有效地提高了信噪比。  相似文献   

9.
极化滤波在三分量噪声衰减中的应用研究   总被引:1,自引:1,他引:0       下载免费PDF全文
极化滤波是根据各种地震波在三分量地震记录上偏振方向、程度的不同,将待处理的地震数据分解到该数据协方差矩阵的特征向量方向上来压制干扰,从而达到提高信噪比的目的.理论合成数据试算结果表明用该方法去除噪声方法灵活、保真性好、分辨率高.但是在实际资料的处理中,由于地层结构复杂多样,各种类型的波相互干扰,噪声衰减的效果受到一定影响.  相似文献   

10.
基于加窗Hilbert变换的复偏振分析方法及其应用   总被引:10,自引:3,他引:10       下载免费PDF全文
考虑到传统Hilbert变换所隐含的无限长序列假设的实际局限性, 本文将多窗分析法引入到短时序列Hilbert变换中, 通过构建复协方差矩阵和对该矩阵的特征值与特征向量的求解, 获得三分量地震记录的时变偏振参数;基于不同波型的偏振特性与实测偏振参数, 采用线性_余弦权重函数或高斯权重函数自适应空间滤波, 识别与分离具有特定偏振特性的不同地震响应. 针对天然地震三分量记录的处理结果表明, 该方法在识别、分离具有特定偏振特性的不同地震响应方面具有一定的潜力.  相似文献   

11.
Obtaining geological information from seismic data motivates researchers to innovate and improve seismic wave processing tools. Polarization-based methods have received much attention regarding their ability to discriminate between different phases of the seismic wave based on polarity. Combining the intuitive definition of polarity in the frequency domain (monochromatic waves) with the non-stationary properties provided by time-domain methods, time-frequency approaches are attracting widespread interest because they localize the information extracted from the seismic waves in the joint time and frequency domains. Due to the lack of high-resolution time-frequency maps, the time-frequency polarization approach was not able to resolve specific temporal polarity changes in the seismic signal. The main objective of this study was to devise a robust time-frequency-based polarization filtering method using high-resolution polarization attributes obtained directly from the sparse time-frequency map without using Eigen analysis or analytic signals. The method proposed here utilizes a computationally effective sparsity-based adaptive S-transform to obtain a high-resolution polarization map of an inherently non-stationary seismogram for the entire frequency content of the signal at different times. The superiority of the proposed method over the S-transform method was verified using synthetic and real data sets to calculate the polarization attributes in the time-frequency domain and separate the Rayleigh waves from the seismogram.  相似文献   

12.
宽频带地震观测数据中有效信号和干扰噪声经常发生混频效应,常规的频率域滤波方法很难将二者分离.地震波信号属于时变非平稳信号,时频分析方法能够同时得到地震波信号随着时间和频率变化的振幅和相位特征,S变换是其中较为高效的时频分析工具之一.本文以S变换为例,提出了基于相位叠加的时频域相位滤波方法.与传统叠加方法相比,相位叠加方法对强振幅不敏感,对波形一致性相当敏感,更加利于有效弱信号信息的检测.时频域相位滤波方法滤除与有效信号不相干的背景噪声,保留了相位一致的有效信号成分,显著提高了信噪比.运用理论合成的远震接收函数数据和实际的宽频带地震观测数据检验结果显示该方法较传统的带通滤波方法相比,即使在信噪较低且混频严重条件下,时频域相位滤波方法的滤波效果依然很明显,有助于识别能量较弱的有效信号.  相似文献   

13.
In the paper, we propose a surface wave suppression method in time-frequency domain based on the wavelet transform, considering the characteristic difference of polarization attributes, amplitude energy and apparent velocity between the effective signals and strong surface waves. First, we use the proposed method to obtain time–frequency spectra of seismic signals by using the wavelet transform and calculate the instantaneous polarizability at each point based on instantaneous polarization analysis. Then, we separate the surface wave area from the signal area based on the surface-wave apparent velocity and the average energy of the signal. Finally, we combine the polarizability, energy, and frequency characteristic to identify and suppress the signal noise. Model and field data are used to test the proposed filtering method.  相似文献   

14.
This paper presents an analytical study of the complete transform of improved Gabor wavelets (IGWs), and discusses its application to the processing and interpretation of seismic signals. The complete Gabor wavelet transform has the following properties. First, unlike the conventional transform, the improved Gabor wavelet transform (IGWT) maps time domain signals to the time-frequency domain instead of the time-scale domain. Second, the IGW’s dominant frequency is fixed, so the transform can perform signal frequency division, where the dominant frequency components of the extracted sub-band signal carry essentially the same information as the corresponding components of the original signal, and the subband signal bandwidth can be regulated effectively by the transform’s resolution factor. Third, a time-frequency filter consisting of an IGWT and its inverse transform can accurately locate target areas in the time-frequency field and perform filtering in a given time-frequency range. The complete IGW transform’s properties are investigated using simulation experiments and test cases, showing positive results for seismic signal processing and interpretation, such as enhancing seismic signal resolution, permitting signal frequency division, and allowing small faults to be identified.  相似文献   

15.
Improving the seismic time–frequency resolution is a crucial step for identifying thin reservoirs. In this paper, we propose a new high-precision time–frequency analysis algorithm, synchroextracting generalized S-transform, which exhibits superior performance at characterizing reservoirs and detecting hydrocarbons. This method first calculates time–frequency spectra using generalized S-transform; then, it squeezes all but the most smeared time–frequency coefficients into the instantaneous frequency trajectory and finally obtains highly accurate and energy-concentrated time–frequency spectra. We precisely deduce the mathematical formula of the synchroextracting generalized S-transform. Synthetic signal examples testify that this method can correctly decompose a signal and provide a better time–frequency representation. The results of a synthetic seismic signal and real seismic data demonstrate that this method can identify some reservoirs with thincknesses smaller than a quarter wavelength and can be successfully applied for hydrocarbon detection. In addition, examples of synthetic signals with different levels of Gaussian white noise show that this method can achieve better results under noisy conditions. Hence, the synchroextracting generalized S-transform has great application prospects and merits in seismic signal processing and interpretation.  相似文献   

16.
地震勘探信号时频分析方法对比与应用分析   总被引:16,自引:7,他引:9       下载免费PDF全文
针对地震勘探信号,对非平稳信号时频分析几种适效方法:短时Fourier变换、小波变换、S变换、Wigner分布、平滑伪Wigner分布、锥形核时频分布、AOK(adaptive optimum kernel,自适应最优核函数)分布等进行对比与应用研究.在阐明各种方法基本原理的基础上,进行数值分析与应用研究.首先对非平稳地震勘探模拟信号进行试算及时频属性提取,结合各类方法的信号表示理论,在时频局部化的精度和交叉项抑制等方面对计算结果进行对比分析;进一步应用于实际二维地震数据,提取瞬时频率和瞬时带宽等时频属性,进行比较研究.研究表明:对于地震勘探信号,就本文涉及的几种时频分析方法而言,AOK分布是时频局部化精度最高、交叉项抑制最好、时频匹配最优的方法,值得在地震勘探信号分析和地震属性提取、频谱分解等应用中深入研究和应用.  相似文献   

17.
二阶同步挤压S变换及其在地震谱分解中的应用   总被引:1,自引:0,他引:1       下载免费PDF全文
同步挤压S变换是一种处理非平稳信号的新时频变换方法,通过"挤压"信号的S变换结果,可以得到高分辨率的时频谱.但是,当信号的相位随时间呈非线性变化时,同步挤压S变换计算出的瞬时频率会出现误差,并造成时频谱分辨率降低.为了改善其对于该类信号的时频分析效果,我们利用时间和频率的二阶偏导数对瞬时频率计算式进行修正,提出二阶同步挤压S变换.合成信号处理结果表明,二阶同步挤压S变换的分辨率不但明显高于常用时频变换,在信号瞬时频率随时间呈二次或正弦变化的情况下,其时频挤压效果也好于同步挤压S变换.我们将二阶同步挤压S变换应用到天然气地震勘探资料的谱分解当中,结果表明,二阶同步挤压S变换可以很好地检测到与天然气相关的谱异常.因此,二阶同步挤压变换对于地震解释是一种很有潜力的方法.  相似文献   

18.
To improve the data quality of converted waves, and better identify and suppress the strong ground-roll interference in three-component (3C) seismic recordings on land, we present an adaptive polarization filtering method, which can effectively separate the groundroll interference by combining complex polarization and instantaneous polarization analysis. The ground roll noise is characterized by elliptical plane polarization, strong energy, low apparent velocity, and low frequency. After low-pass filtering of the 3C data input within a given time-window of the ground roll, the complex covariance matrix is decomposed using the sliding time window with overlapping data and length that depends on the dominant ground-roll frequency. The ground-roll model is established using the main eigenvectors, and the ground roll is detected and identified using the instantaneous polarization area attributes and average energy constraints of the ground-roll zone. Finally, the ground roll is subtracted. The threshold of the method is stable and easy to select, and offers good groundroll detection. The method is a robust polarization filtering method. Model calculations and actual data indicate that the method can effectively identify and attenuate ground roll while preserving the effective signals.  相似文献   

19.
We designed the window function of the optimal Gabor transform based on the time-frequency rotation property of the fractional Fourier transform. Thus, we obtained the adaptive optimal Gabor transform in the fractional domain and improved the time-frequency concentration of the Gabor transform. The algorithm first searches for the optimal rotation factor, then performs the p-th FrFT of the signal and, finally, performs time and frequency analysis of the FrFT result. Finally, the algorithm rotates the plane in the fractional domain back to the normal time-frequency plane. This promotes the application of FrFT in the field of high-resolution reservoir prediction. Additionally, we proposed an adaptive search method for the optimal rotation factor using the Parseval principle in the fractional domain, which simplifies the algorithm. We carried out spectrum decomposition of the seismic signal, which showed that the instantaneous frequency slices obtained by the proposed algorithm are superior to the ones obtained by the traditional Gabor transform. The adaptive time frequency analysis is of great significance to seismic signal processing.  相似文献   

20.
为了恢复震动波能量在传播过程中产生的衰减损耗,提出基于褶积原理求取品质因子Q的方法与改进广义S变换相结合的反Q滤波法。通过震动波衰减补偿模型试验,对试验数据进行改进广义S变换的时频特性分析,得出了信号的能量分布情况以及时间频率对应关系;采用基于褶积原理求取品质因子的方法,得到时变Q值;对试验数据进行反Q滤波处理,使震动波能量得到了补偿。结果表明本文提出的反Q滤波法提高了对震动波能量衰减补偿的效果,拓宽了地震资料的频带,提高了地震资料分辨率,有利于进行高分辨率地震勘探、深部信号增强和油气藏预测工作的开展。  相似文献   

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