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Advanced seat suspension control system design for heavy duty vehicles
Authors: ---
ISBN: 9780128226834 0128226838 9780128196014 0128196017 Year: 2020 Publisher: London : Academic Press,

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Abstract

This book provides systematic knowledge of the advanced seat suspension design and control for heavy duty vehicles. -- Edited summary from book


Book
Modeling, dynamics, and control of electrified vehicles
Authors: --- ---
ISBN: 9780128131091 0128131098 0128127864 9780128127865 Year: 2018 Publisher: Duxhurst, England : Woodhead Publishing,

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Modelling, Dynamics and Control of Electrified Vehicles provides a systematic overview of EV-related key components, including batteries, electric motors, ultracapacitors and system-level approaches, such as energy management systems, multi-source energy optimization, transmission design and control, braking system control and vehicle dynamics control. In addition, the book covers selected advanced topics, including Smart Grid and connected vehicles. This book shows how EV work, how to design them, how to save energy with them, and how to maintain their safety. The book aims to be an all-in-one reference for readers who are interested in EVs, or those trying to understand its state-of-the-art technologies and future trends.


Book
Vibration Control of Vehicle Suspension Systems
Authors: --- ---
ISBN: 1003265669 1000999297 9781003265665 Year: 2023 Publisher: Boca Raton, FL : CRC Press,

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This book covers complex issues for a vehicle suspension model, including non-linearities and uncertainties in a suspension model, network-induced time delays, and sampled-data model from a theoretical point of view. It includes control design methods such as neural network supervisory, sliding mode variable structure, optimal control, internal-model principle, feedback linearization control, input-to-state stabilization, and so on. Every control method is applied to the simulation for comparison and verification. Features: Includes theoretical derivation, proof, and simulation verification combined with suspension models Provides the vibration control strategies for sampled-data suspension models Focuses on the suspensions with time-delays instead of delay-free Covers all the models related to quarter-, half-, and full-vehicle suspensions Details rigorous mathematical derivation process for each theorem supported by MATLAB-based simulation This book is aimed at researchers and graduate students in automotive engineering, vehicle vibration, mechatronics, control systems, applied mechanics, and vehicle dynamics.


Book
Advanced Sensing and Control for Connected and Automated Vehicles
Authors: --- --- --- --- --- et al.
Year: 2022 Publisher: Basel MDPI - Multidisciplinary Digital Publishing Institute

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Connected and automated vehicles (CAVs) are a transformative technology that is expected to change and improve the safety and efficiency of mobility. As the main functional components of CAVs, advanced sensing technologies and control algorithms, which gather environmental information, process data, and control vehicle motion, are of great importance. The development of novel sensing technologies for CAVs has become a hotspot in recent years. Thanks to improved sensing technologies, CAVs are able to interpret sensory information to further detect obstacles, localize their positions, navigate themselves, and interact with other surrounding vehicles in the dynamic environment. Furthermore, leveraging computer vision and other sensing methods, in-cabin humans’ body activities, facial emotions, and even mental states can also be recognized. Therefore, the aim of this Special Issue has been to gather contributions that illustrate the interest in the sensing and control of CAVs.

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