9783845401683-3845401680-MPC-on-Chip in Application to Automotive Active Suspension System

MPC-on-Chip in Application to Automotive Active Suspension System

ISBN-13: 9783845401683
ISBN-10: 3845401680
Author: Yasser Shoukry
Publication date: 2011
Publisher: LAP LAMBERT Academic Publishing
Format: Paperback 144 pages
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Book details

ISBN-13: 9783845401683
ISBN-10: 3845401680
Author: Yasser Shoukry
Publication date: 2011
Publisher: LAP LAMBERT Academic Publishing
Format: Paperback 144 pages

Summary

MPC-on-Chip in Application to Automotive Active Suspension System (ISBN-13: 9783845401683 and ISBN-10: 3845401680), written by authors Yasser Shoukry, was published by LAP LAMBERT Academic Publishing in 2011. With an overall rating of 3.9 stars, it's a notable title among other Engineering (Technology) books. You can easily purchase or rent MPC-on-Chip in Application to Automotive Active Suspension System (Paperback) from BooksRun, along with many other new and used Engineering books and textbooks. And, if you're looking to sell your copy, our current buyback offer is $0.5.

Description

Applying a computationally intensive control algorithm inside an embedded time-safety-critical application represents a Cyber-Physical challenge. This book applies Generalized Predictive Control on automotive active suspension system. The main objective of any automotive active suspension system is to achieve an acceptable behavior, i.e., ride comfort, over a range of working frequencies while minimizing the exerted energy. Book's objective is to proof the ability of using time-consuming advanced control algorithms on time-safety-critical embedded applications while satisfying tight real-time constraints.Matrix operations consume a large portion of the overall execution time of the online computation of the controller. A hardware co-processor based on a set of systolic arrays is proposed to meet real-time constraints. The proposed computing system is then integrated inside an ARM-based embedded platform using the state-of-the-art CAP9 technology. The proposed computation system is verified to meet real-time constraints over wide range of tuning parameters.

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