ベイズ最適化:Pythonによる理論と実践<br>Bayesian Optimization : Theory and Practice Using Python (1st)

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ベイズ最適化:Pythonによる理論と実践
Bayesian Optimization : Theory and Practice Using Python (1st)

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  • 製本 Paperback:紙装版/ペーパーバック版/ページ数 234 p.
  • 言語 ENG
  • 商品コード 9781484290620
  • DDC分類 519.54202855133

Full Description

This book covers the essential theory and implementation of popular Bayesian optimization techniques in an intuitive and well-illustrated manner. The techniques covered in this book will enable you to better tune the hyperparemeters of your machine learning models and learn sample-efficient approaches to global optimization.

The book begins by introducing different Bayesian Optimization (BO) techniques, covering both commonly used tools and advanced topics. It follows a "develop from scratch" method using Python, and gradually builds up to more advanced libraries such as BoTorch, an open-source project introduced by Facebook recently. Along the way, you'll see practical implementations of this important discipline along with thorough coverage and straightforward explanations of essential theories. This book intends to bridge the gap between researchers and practitioners, providing both with a comprehensive, easy-to-digest, and useful reference guide.

After completingthis book, you will have a firm grasp of Bayesian optimization techniques, which you'll be able to put into practice in your own machine learning models.

What You Will Learn

Apply Bayesian Optimization to build better machine learning models
Understand and research existing and new Bayesian Optimization techniques
Leverage high-performance libraries such as BoTorch, which offer you the ability to dig into and edit the inner working
Dig into the inner workings of common optimization algorithms used to guide the search process in Bayesian optimization

Who This Book Is ForBeginner to intermediate level professionals in machine learning, analytics or other roles relevant in data science.

Contents

Chapter 1: Bayesian Optimization Overview.- Chapter 2:  Gaussian Process.- Chapter 3: Bayesian Decision Theory and Expected Improvement.- Chapter 4 : Gaussian Process Regression with GPyTorch.- Chapter 5:  Monte Carlo Acquisition Function with Sobol Sequences and Random Restart.- Chapter 6 : Knowledge Gradient: Nested Optimization versus One-shot Learning.- Chapter 7 : Case Study: Tuning CNN Learning Rate with BoTorch.

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