Back Propagation Neural Network

Environmentally adaptive acoustic transmission loss prediction with neural networks

Acoustics / Situation awareness / Fuzzy Logic / Neural Networks / Neural Network / Multidisciplinary / High Frequency / Root-Mean Square Error / Adaptive System / Real Time / Parabolic Wave Equation / Environmental Conditions / Back Propagation Neural Network / Sound Pressure Level / Environment / Acoustic Modeling / Environmental Parameter / Predictive value of tests / Prediction Accuracy / Multidisciplinary / High Frequency / Root-Mean Square Error / Adaptive System / Real Time / Parabolic Wave Equation / Environmental Conditions / Back Propagation Neural Network / Sound Pressure Level / Environment / Acoustic Modeling / Environmental Parameter / Predictive value of tests / Prediction Accuracy

A Comparative Study Of Neural Networks Models For EMG Pattern Classification

Biomedical Engineering / Neural Networks / Medicine / Pattern Classification / Back Propagation Neural Network / Network Topology / Neural Net / Neural Network Model / Network Topology / Neural Net / Neural Network Model

A Comparative Study Of Neural Networks Models For EMG Pattern Classification

Biomedical Engineering / Neural Networks / Medicine / Pattern Classification / Back Propagation Neural Network / Network Topology / Neural Net / Neural Network Model / Network Topology / Neural Net / Neural Network Model

Incorporating anthropogenic variables into a species distribution model to map gypsy moth risk

Modeling / Risk / Invasive Species / Neural Network / Multidisciplinary / Ecological Modelling / Lepidoptera / Logistic Regression / Models / Case Study / United States / Ecological / Vulnerability assessment / Species Distribution Model / Insect pests / Back Propagation Neural Network / Human Activity / Spatial Data / Variable / Lymantria Dispar / Weighted Linear Combination / Area Under the Curve / Gypsy Moth / Neural Network Model / Ecological Modelling / Lepidoptera / Logistic Regression / Models / Case Study / United States / Ecological / Vulnerability assessment / Species Distribution Model / Insect pests / Back Propagation Neural Network / Human Activity / Spatial Data / Variable / Lymantria Dispar / Weighted Linear Combination / Area Under the Curve / Gypsy Moth / Neural Network Model

Incorporating anthropogenic variables into a species distribution model to map gypsy moth risk

Invasive Species / Neural Network / Multidisciplinary / Ecological Modelling / Logistic Regression / Case Study / United States / Ecological / Vulnerability assessment / Species Distribution Model / Insect pests / Back Propagation Neural Network / Human Activity / Spatial Data / Lymantria Dispar / Weighted Linear Combination / Area Under the Curve / Gypsy Moth / Neural Network Model / Case Study / United States / Ecological / Vulnerability assessment / Species Distribution Model / Insect pests / Back Propagation Neural Network / Human Activity / Spatial Data / Lymantria Dispar / Weighted Linear Combination / Area Under the Curve / Gypsy Moth / Neural Network Model

Neural crack identification in steady state elastodynamics

Engineering / Back Propagation / Boundary Element Methods / Neural Network / Mathematical Sciences / Inverse Problem / Steady state / Frequency Dependence / Back Propagation Neural Network / Input Output / Linear Equations / Structural Response / Feed-Forward / Frequency Domain / Inverse Problem / Steady state / Frequency Dependence / Back Propagation Neural Network / Input Output / Linear Equations / Structural Response / Feed-Forward / Frequency Domain

Neural crack identification in steady state elastodynamics

Engineering / Back Propagation / Boundary Element Methods / Neural Network / Mathematical Sciences / Inverse Problem / Steady state / Frequency Dependence / Back Propagation Neural Network / Input Output / Linear Equations / Structural Response / Feed-Forward / Frequency Domain / Inverse Problem / Steady state / Frequency Dependence / Back Propagation Neural Network / Input Output / Linear Equations / Structural Response / Feed-Forward / Frequency Domain

Visual evoked potentials discrimination based on adaptive zero-tracking neural network

Algorithms / Neural Network / Discriminant Analysis / Humans / Visual Evoked Potential / LINEAR PREDICTIVE CODING / Success Rate / Back Propagation Neural Network / Visual Evoked Potentials / Artificial Neural Network / LINEAR PREDICTIVE CODING / Success Rate / Back Propagation Neural Network / Visual Evoked Potentials / Artificial Neural Network

Proton exchange membrane fuel cell voltage-tracking using artificial neural networks

Proton Exchange Membrane / Energy Consumption / Neural Network / Fuel Cell / Control system / PEM fuel cell / Back Propagation Neural Network / System performance / Nonlinear Model / Proton Exchange Membrane Fuel Cell / Flow Rate / Artificial Neural Network / Predictive Control / Feed-Forward / Control Algorithm / Neural Network Model / PEM fuel cell / Back Propagation Neural Network / System performance / Nonlinear Model / Proton Exchange Membrane Fuel Cell / Flow Rate / Artificial Neural Network / Predictive Control / Feed-Forward / Control Algorithm / Neural Network Model

Proton exchange membrane fuel cell voltage-tracking using artificial neural networks

Proton Exchange Membrane / Energy Consumption / Neural Network / Fuel Cell / Control system / PEM fuel cell / Back Propagation Neural Network / System performance / Nonlinear Model / Proton Exchange Membrane Fuel Cell / Flow Rate / Artificial Neural Network / Predictive Control / Feed-Forward / Control Algorithm / Neural Network Model / PEM fuel cell / Back Propagation Neural Network / System performance / Nonlinear Model / Proton Exchange Membrane Fuel Cell / Flow Rate / Artificial Neural Network / Predictive Control / Feed-Forward / Control Algorithm / Neural Network Model
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