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LLM Engineer's Handbook

LLM Engineer's Handbook

By : Paul Iusztin, Maxime Labonne
4.9 (29)
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LLM Engineer's Handbook

LLM Engineer's Handbook

4.9 (29)
By: Paul Iusztin, Maxime Labonne

Overview of this book

Artificial intelligence has undergone rapid advancements, and Large Language Models (LLMs) are at the forefront of this revolution. This LLM book offers insights into designing, training, and deploying LLMs in real-world scenarios by leveraging MLOps best practices. The guide walks you through building an LLM-powered twin that’s cost-effective, scalable, and modular. It moves beyond isolated Jupyter notebooks, focusing on how to build production-grade end-to-end LLM systems. Throughout this book, you will learn data engineering, supervised fine-tuning, and deployment. The hands-on approach to building the LLM Twin use case will help you implement MLOps components in your own projects. You will also explore cutting-edge advancements in the field, including inference optimization, preference alignment, and real-time data processing, making this a vital resource for those looking to apply LLMs in their projects. By the end of this book, you will be proficient in deploying LLMs that solve practical problems while maintaining low-latency and high-availability inference capabilities. Whether you are new to artificial intelligence or an experienced practitioner, this book delivers guidance and practical techniques that will deepen your understanding of LLMs and sharpen your ability to implement them effectively.
Table of Contents (15 chapters)
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13
Other Books You May Enjoy
14
Index

MLOps Principles

Building robust and scalable ML systems requires more than creating powerful models. It demands an all-encompassing approach to operationalizing the entire ML lifecycle. Let’s explore the six core principles that guide the MLOps field. These principles are independent of any tool and are at the core of building robust and scalable ML systems. They provide a guideline for designing production-ready applications, ensuring consistency, reliability, and scalability at every stage.

With that in mind, let’s begin with the foundation: automation or operationalization.

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