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Formal Verification Of Control System Software Pierreloc Garoche

  • SKU: BELL-51946680
Formal Verification Of Control System Software Pierreloc Garoche
$ 31.00 $ 45.00 (-31%)

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Formal Verification Of Control System Software Pierreloc Garoche instant download after payment.

Publisher: Princeton University Press
File Extension: PDF
File size: 4.46 MB
Pages: 232
Author: Pierre-Loïc Garoche
ISBN: 9780691189581, 0691189587
Language: English
Year: 2019

Product desciption

Formal Verification Of Control System Software Pierreloc Garoche by Pierre-loïc Garoche 9780691189581, 0691189587 instant download after payment.

This is the first book on the formal analysis of controller software implementation and verification using convex optimization.


An essential introduction to the analysis and verification of control systems software


The verification of control systems software is critical to a host of technologies and industries, from aeronautics and medical technology to the cars we drive—the failure of controller software can cost people their lives. In this authoritative and accessible book, Pierre-Loïc Garoche provides control engineers and computer scientists with an indispensable introduction to the formal techniques for analyzing and verifying this important class of software.


Too often, control engineers are unaware of the issues surrounding the verification of software, while computer scientists tend to be unfamiliar with the specificities of controller software. Garoche provides a unified approach especially geared to graduate students in both fields, covering formal verification methods as well as the design and verification of controllers. He presents a wealth of new verification techniques for performing exhaustive analysis of controller software. These include new means to compute nonlinear invariants, the use of convex optimization tools, and methods for dealing with numerical imprecisions such as floating point computations occurring in the analyzed software.


As the autonomy of these systems continues to increase—such as in autonomous cars, drones, and satellites and landers—the numerical functions in critical systems are growing ever more advanced. The techniques presented here are essential to support the formal analysis of the controller software being used in these new and emerging technologies.

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