A global optimization method based on a Genetic-Price hybrid Algorithm (GPA) is proposed for identifying the source parameters of self-potential (SP) anomalies. The effectiveness of the proposed approach is tested on synthetic SP data generated by simple polarized structures, like sphere, vertical cylinder, horizontal cylinder and inclined sheet. An extensive numerical analysis on signals affected by different percentage of white Gaussian random noise shows that the GPA is able to provide fast and accurate estimations of the true parameters in all tested examples. In particular, the calculation of the root-mean squared error between the true and inverted SP parameter sets is found to be crucial for the identification of the source anomaly s...
In the last few decades, the spectral analysis approach has been successfully applied for depth esti...
Various methods have been proposed to interpret the self-potential anomalies due to sheet-like bodie...
Changes in the size and depth of sources greatly affect self-potential (SP) anomalies. Therefore, it...
A global optimization method based on a Genetic-Price hybrid Algorithm (GPA) is proposed for identif...
Multiple self-potential (SP) anomalies are analyzed by using a Genetic-Price Algorithm (GPA), which ...
Abstract. A new technique is presented for automatic inversion of SP anomalies due to a polarized in...
Three naturally inspired meta-heuristic algorithms-the genetic algorithm (GA), simulated annealing (...
Self-Potential (SP) fields are natural fields that originate from various forcing mechanisms related...
A new approach to the interpretation of magnetic anomalies generated by geological structures resemb...
In the last decades, an increasing number of global optimization algorithms has been proposed to sol...
The aim of this work is to investigate whether retrieving the model parameters of self-potential (SP...
An integrated approach to interpret Self-Potential (SP) anomalies based on spectral analysis and tom...
A new approach based on global optimization technique is applied to invert Self-Potential (SP) data ...
Self-Potential (SP) anomaly is naturally occurring potential differences due to electrochemical, ele...
Recently, Normalized Full Gradient (NFG) method has widespread applications to natural potential fie...
In the last few decades, the spectral analysis approach has been successfully applied for depth esti...
Various methods have been proposed to interpret the self-potential anomalies due to sheet-like bodie...
Changes in the size and depth of sources greatly affect self-potential (SP) anomalies. Therefore, it...
A global optimization method based on a Genetic-Price hybrid Algorithm (GPA) is proposed for identif...
Multiple self-potential (SP) anomalies are analyzed by using a Genetic-Price Algorithm (GPA), which ...
Abstract. A new technique is presented for automatic inversion of SP anomalies due to a polarized in...
Three naturally inspired meta-heuristic algorithms-the genetic algorithm (GA), simulated annealing (...
Self-Potential (SP) fields are natural fields that originate from various forcing mechanisms related...
A new approach to the interpretation of magnetic anomalies generated by geological structures resemb...
In the last decades, an increasing number of global optimization algorithms has been proposed to sol...
The aim of this work is to investigate whether retrieving the model parameters of self-potential (SP...
An integrated approach to interpret Self-Potential (SP) anomalies based on spectral analysis and tom...
A new approach based on global optimization technique is applied to invert Self-Potential (SP) data ...
Self-Potential (SP) anomaly is naturally occurring potential differences due to electrochemical, ele...
Recently, Normalized Full Gradient (NFG) method has widespread applications to natural potential fie...
In the last few decades, the spectral analysis approach has been successfully applied for depth esti...
Various methods have been proposed to interpret the self-potential anomalies due to sheet-like bodie...
Changes in the size and depth of sources greatly affect self-potential (SP) anomalies. Therefore, it...