Advanced Methods In Neural Networks Based Sensitivity Analysis With Their Applications In Civil Engineering

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Advanced Methods in Neural Networks-Based Sensitivity Analysis with Their Applications in Civil Engineering

Advanced Methods in Neural Networks-Based Sensitivity Analysis with Their Applications in Civil Engineering
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Book Synopsis Advanced Methods in Neural Networks-Based Sensitivity Analysis with Their Applications in Civil Engineering by : Maosen Cao

Download or read book Advanced Methods in Neural Networks-Based Sensitivity Analysis with Their Applications in Civil Engineering written by Maosen Cao and published by . This book was released on 2016 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt: Artificial neural networks (ANNs) are powerful tools that are used in various engineering fields. Their characteristics enable them to solve prediction, regression, and classification problems. Nevertheless, the ANN is usually thought of as a black box, in which it is difficult to determine the effect of each explicative variable (input) on the dependent variables (outputs) in any problem. To investigate such effects, sensitivity analysis is usually applied on the optimal pre-trained ANN. Existing sensitivity analysis techniques suffer from drawbacks. Their basis on a single optimal pre-trained ANN model produces instability in parameter sensitivity analysis because of the uncertainty in neural network modeling. To overcome this deficiency, two successful sensitivity analysis paradigms, the neural network committee (NNC)-based sensitivity analysis and the neural network ensemble (NNE)-based parameter sensitivity analysis, are illustrated in this chapter. An NNC is applied in a case study of geotechnical engineering involving strata movement. An NNE is implemented for sensitivity analysis of two classic problems in civil engineering: (i) the fracture failure of notched concrete beams and (ii) the lateral deformation of deep-foundation pits. Results demonstrate good ability to analyze the sensitivity of the most influential parameters, illustrating the underlying mechanisms of such engineering systems.


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