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Algorithms for Validation
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$110.00
| Expected release date is Nov 10th 2026 |
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Product Details
Author:
Mykel J. Kochenderfer, Sydney M. Katz, Anthony L. Corso, Robert J. Moss
Format:
Hardcover
Pages:
442
Publisher:
MIT Press (November 10, 2026)
Imprint:
The MIT Press
Release Date:
November 10, 2026
Language:
English
Audience:
General/trade
ISBN-13:
9780262056014
ISBN-10:
0262056011
Weight:
20oz
Dimensions:
8" x 9"
File:
RandomHouse-PRH_Book_Company_PRH_PRT_Onix_delta_active_D20260821T002943_157605766-20260821.xml
Folder:
RandomHouse
List Price:
$110.00
Country of Origin:
United States
Pub Discount:
65
Case Pack:
12
As low as:
$84.70
Publisher Identifier:
P-RH
Discount Code:
A
QuickShip:
Yes
Overview
A broad, rigorous introduction to algorithms for validating safety-critical systems.
Validation is a critical component of the development process for decision-making systems used in high-stakes settings, from autonomous vehicles and aviation to finance and healthcare. As these systems and their operating environments increase in complexity, understanding the full spectrum of possible behaviors becomes more difficult and requires a rigorous validation process. This comprehensive textbook presents a variety of computational methods for validating autonomous systems, introducing the underlying mathematical problem formulations and the algorithms for solving them. Unifying techniques from multiple fields under a common validation framework, it provides advanced undergraduate and graduate students objective strategies for validation.
The text first covers techniques required to formulate validation problems in a common structure. It then addresses sampling-based failure analysis techniques such as falsification and failure probability estimation, followed by formal methods for reachability analysis, explainability, and runtime monitoring. Algorithmic implementations are provided throughout.
Validation is a critical component of the development process for decision-making systems used in high-stakes settings, from autonomous vehicles and aviation to finance and healthcare. As these systems and their operating environments increase in complexity, understanding the full spectrum of possible behaviors becomes more difficult and requires a rigorous validation process. This comprehensive textbook presents a variety of computational methods for validating autonomous systems, introducing the underlying mathematical problem formulations and the algorithms for solving them. Unifying techniques from multiple fields under a common validation framework, it provides advanced undergraduate and graduate students objective strategies for validation.
The text first covers techniques required to formulate validation problems in a common structure. It then addresses sampling-based failure analysis techniques such as falsification and failure probability estimation, followed by formal methods for reachability analysis, explainability, and runtime monitoring. Algorithmic implementations are provided throughout.
- Offers unified framework for formulating validation problems
- Presents both sampling-based and formal methods
- Accessibly introduces failure probability estimation algorithms and reachability algorithms for linear, nonlinear, and discrete systems
- Emphasizes practical considerations for applying algorithms to real-world systems









