...
首页> 外文期刊>Geophysical Prospecting >Two-dimensional controlled-source electromagnetic interferometry by multidimensional deconvolution: spatial sampling aspects
【24h】

Two-dimensional controlled-source electromagnetic interferometry by multidimensional deconvolution: spatial sampling aspects

机译:多维解卷积的二维受控源电磁干涉仪:空间采样方面

获取原文
获取原文并翻译 | 示例

摘要

We use numerically modelled data sets to investigate the sensitivity of electromagnetic interferometry by multidimensional deconvolution to spatial receiver sampling. Interferometry by multidimensional deconvolution retrieves the reflection response below the receivers after decomposition of the fields into upward and downward decaying fields and deconvolving the upward decaying field by the downward decaying field. Thereby the medium above the receiver level is replaced with a homogeneous half-space, the sources are redatumed to the receiver level and the direct field is removed. Consequently, in a marine setting the retrieved reflection response is independent of any effect of the water layer and the air above. A drawback of interferometry by multidimensional deconvolution is a possibly unstable matrix inversion, which is necessary to retrieve the reflection response. Additionally, in order to correctly separate the upward and the downward decaying fields, the electromagnetic fields need to be sampled properly. We show that the largest possible receiver spacing depends on two parameters: the vertical distance between the source and the receivers and the length of the source. The receiver spacing should not exceed the larger of these two parameters. Besides these two parameters, the presence of inhomogeneities close to the receivers may also require a dense receiver sampling. We show that by using the synthetic aperture concept, an elongated source can be created from conventionally acquired data in order to overcome these strict sampling criteria. Finally, we show that interferometry may work under real-world conditions with random noise and receiver orientation and positioning errors.
机译:我们使用数值建模的数据集来研究通过多维反卷积对空间接收器采样进行电磁干涉测量的敏感性。在将场分解为向上和向下的衰减场,并通过向下的衰减场对向上的衰减场进行解卷积之后,通过多维反卷积的干涉术可以在接收器下方获取反射响应。从而用均匀的半空间替换了接收器级别上方的介质,将源重新基准化为接收器级别,并去除了直接磁场。因此,在海洋环境中,所获取的反射响应与水层和上方空气的任何影响无关。多维反卷积的干涉测量法的一个缺点是可能存在不稳定的矩阵求逆,这对于检索反射响应是必需的。另外,为了正确分离向上和向下的衰减场,需要对电磁场进行适当的采样。我们表明,最大可能的接收器间距取决于两个参数:源和接收器之间的垂直距离以及源的长度。接收器间距不应超过这两个参数中的较大者。除了这两个参数,靠近接收器的不均匀性的存在还可能需要密集的接收器采样。我们表明,通过使用合成孔径概念,可以从常规采集的数据中创建细长的源,以克服这些严格的采样标准。最后,我们证明了干涉测量法可能会在具有随机噪声,接收器方向和定位误差的现实条件下工作。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号