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    • 2. 发明授权
    • Method of subsurface imaging using superposition of sensor sensitivities from geophysical data acquisition systems
    • 使用地球物理数据采集系统的传感器灵敏度叠加的地下成像方法
    • US09542359B2
    • 2017-01-10
    • US13730548
    • 2012-12-28
    • TechnoImaging, LLC
    • Michael S. ZhdanovLeif H. Cox
    • G01V3/00G01V3/38G06F17/16G01V11/00
    • G06F17/16G01V11/00G01V11/002
    • Volume imaging of geological structures and/or man-made objects having physical property using geophysical field sources and/or sensors mounted from at least one data acquisition system. The sources may include natural field sources and/or man-made sources. The sensors may measure at least one component of the geophysical field. The subsets of the geophysical survey formed by the at least one source of geophysical data are selected, and the integrated sensitivity subdomains for selected subsets of the survey are determined by determining the volumes where the integrated sensitivity of the subset is greater than a predetermined threshold. The total sensitivity is determined as the superposition of the sensitivities from all of the integrated sensitivity subdomains. The fields measured for each combination of source and/or sensors may be volume imaged where 3D inversion/imaging is based on the total sensitivity calculated as the superposition of the sensitivities from all of the integrated sensitivity subdomains.
    • 使用地球物理场源和/或从至少一个数据采集系统安装的传感器,具有物理性质的地质结构和/或人造物体的体积成像。 来源可以包括自然场源和/或人造源。 传感器可以测量地球物理场的至少一个分量。 选择由至少一个地球物理数据源形成的地球物理测量的子集,并且通过确定该子集的积分灵敏度大于预定阈值的体积来确定对所选择的测量子集的集成灵敏度子域。 总灵敏度被确定为来自所有综合灵敏度子域的灵敏度的叠加。 对于源和/或传感器的每个组合测量的场可以是体积成像的,其中3D反转/成像基于作为来自所有积分灵敏度子域的灵敏度的叠加计算的总灵敏度。
    • 3. 发明申请
    • METHODS OF MULTINARY INVERSION FOR IMAGING OBJECTS WITH DISCRETE PHYSICAL PROPERTIES
    • 用于具有离散物理特性的成像对象的多项式反演方法
    • US20140056481A1
    • 2014-02-27
    • US13974949
    • 2013-08-23
    • TechnoImaging, LLC
    • Michael S. ZhdanovLeif H. Cox
    • G06K9/00
    • G06K9/00624G01V11/00
    • A method of multinary inversion for imaging objects with discrete physical properties of the examined medium is described. The model parameters of the target area are parameterized in terms of a multinary function of the physical properties that accepts a finite number of discrete values from the continuum of at least one physical property. The multinary function is chosen such that the derivative of the multinary function with respect to the physical property is a continuous and known function. The imaging is based on solving the optimization problem for parametric functional of the multinary functions describing the target model parameters. The method can be applied for multi-modal imaging, such that at least one physical property representing the physical properties of the examined medium, may be derived to provide a reconstruction or classification of the physical properties of the examined medium.
    • 描述了用于对被检查介质的离散物理特性对物体进行成像的多重反演的方法。 根据从至少一个物理属性的连续体接受有限数量的离散值的物理属性的多功能函数,对目标区域的模型参数进行参数化。 选择多项功能,使得多功能相对于物理性质的导数是连续且已知的功能。 该成像基于解决描述目标模型参数的多功能函数的参数化功能的优化问题。 该方法可以应用于多模式成像,使得可以导出表示所检查培养基的物理性质的至少一种物理性质来提供被检测培养基的物理性质的重建或分类。