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曙海教育集團(tuán)
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Neural computing – Data science培訓(xùn)

 
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   上課時(shí)間和地點(diǎn)
上課地點(diǎn):【上?!浚和瑵?jì)大學(xué)(滬西)/新城金郡商務(wù)樓(11號(hào)線白銀路站) 【深圳分部】:電影大廈(地鐵一號(hào)線大劇院站)/深圳大學(xué)成教院 【北京分部】:北京中山學(xué)院/福鑫大樓 【南京分部】:金港大廈(和燕路) 【武漢分部】:佳源大廈(高新二路) 【成都分部】:領(lǐng)館區(qū)1號(hào)(中和大道) 【沈陽分部】:沈陽理工大學(xué)/六宅臻品 【鄭州分部】:鄭州大學(xué)/錦華大廈 【石家莊分部】:河北科技大學(xué)/瑞景大廈 【廣州分部】:廣糧大廈 【西安分部】:協(xié)同大廈
最近開課時(shí)間(周末班/連續(xù)班/晚班):2019年1月26日
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課程大綱
 

Overview of neural networks and deep learning
The concept of Machine Learning (ML)
Why we need neural networks and deep learning?
Selecting networks to different problems and data types
Learning and validating neural networks
Comparing logistic regression to neural network
Neural network
Biological inspirations to Neural network
Neural Networks– Neuron, Perceptron and MLP(Multilayer Perceptron model)
Learning MLP – backpropagation algorithm
Activation functions – linear, sigmoid, Tanh, Softmax
Loss functions appropriate to forecasting and classification
Parameters – learning rate, regularization, momentum
Building Neural Networks in Python
Evaluating performance of neural networks in Python
Basics of Deep Networks
What is deep learning?
Architecture of Deep Networks– Parameters, Layers, Activation Functions, Loss functions, Solvers
Restricted Boltzman Machines (RBMs)
Autoencoders
Deep Networks Architectures
Deep Belief Networks(DBN) – architecture, application
Autoencoders
Restricted Boltzmann Machines
Convolutional Neural Network
Recursive Neural Network
Recurrent Neural Network
Overview of libraries and interfaces available in Python
Caffee
Theano
Tensorflow
Keras
Mxnet
Choosing appropriate library to problem
Building deep networks in Python
Choosing appropriate architecture to given problem
Hybrid deep networks
Learning network – appropriate library, architecture definition
Tuning network – initialization, activation functions, loss functions, optimization method
Avoiding overfitting – detecting overfitting problems in deep networks, regularization
Evaluating deep networks
Case studies in Python
Image recognition – CNN
Detecting anomalies with Autoencoders
Forecasting time series with RNN
Dimensionality reduction with Autoencoder
Classification with RBM

 
  備案號(hào):備案號(hào):滬ICP備08026168號(hào)-1 .(2024年07月24日)...............
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