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Empirical Verification
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Classroom Contents
Scalable and Reliable Inference for Probabilistic Modeling
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- 1 Intro
- 2 Many Areas are Revolutionized by Data
- 3 Probabilistic Modeling Pipeline
- 4 Scalable and Reliable Inference
- 5 Talk Outline
- 6 Metropolis-Hastings (MH)
- 7 Minibatch to scale MH
- 8 Empirical Verification
- 9 A: Poisson-Minibatching
- 10 Guaranteed Exactness
- 11 Guaranteed Scalability
- 12 Gaussian Mixture
- 13 Logistic Regression on MNIST
- 14 Gibbs sampling (Geman et al. 1984) • De facto inference method for graphical models
- 15 Inference on Graphical Models
- 16 Poisson-Minibatching for Gibbs Sampling
- 17 Theoretically-Guaranteed Inference
- 18 Question 1
- 19 Why Deep Learning Needs Reliable Inference
- 20 Stochastic gradient MCMC
- 21 Improvements for SG-MCMC
- 22 Question 2 How do you efficiently explore the city? By car or on foot?
- 23 Problem Analysis
- 24 Our solution Cyclical stepsize schedule
- 25 CSG-MCMC Details Introduce a system temperaturer to control the sampler's behavior
- 26 Convergence Guarantees
- 27 Mixture of 25 Gaussians
- 28 Bayesian Neural Networks
- 29 ImageNet
- 30 Efficient Inference for Reliable Deep Learning
- 31 Push the Frontier