OPTIMAL SURVEY DESIGN USING FOCUSED RESISTIVITY ARRAYS

Citation
E. Cherkaeva et Ac. Tripp, OPTIMAL SURVEY DESIGN USING FOCUSED RESISTIVITY ARRAYS, IEEE transactions on geoscience and remote sensing, 34(2), 1996, pp. 358-366
Citations number
15
Categorie Soggetti
Engineering, Eletrical & Electronic","Geochemitry & Geophysics","Remote Sensing
ISSN journal
01962892
Volume
34
Issue
2
Year of publication
1996
Pages
358 - 366
Database
ISI
SICI code
0196-2892(1996)34:2<358:OSDUFR>2.0.ZU;2-X
Abstract
The first problem which needs to be solved when planning any geoelectr ical survey is a choice of a particular electrode configuration that c an give the maximal response from a target inhomogeneity. We formulate a problem of maximizing the response as an optimization problem for a n applied current intensity distribution on the surface. The solution of this problem is the optimal intensity distribution of the current, which maximizes the response from the inclusion. This problem is solve d numerically with Singular Value Decomposition of an impedance matrix . The optimal current array is modeled as a current of varying optimal intensity injected at different electrodes. The problem does not need any information about the inclusion but its measured impedance matrix . Thus an optimal current array can be designed for every particular r esistivity distribution. The optimal current patterns are found for a number of models of a conductive inclusion, and responses doe to the o ptimal current are compared with responses due to conventional arrays. This method can be applied to any background and inclusion resistivit y distribution.