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Design and Control of Hybrid Brake-by-Wire System for Autonomous Vehicle (Hardcover, 1st ed. 2022): Donghai Hu Design and Control of Hybrid Brake-by-Wire System for Autonomous Vehicle (Hardcover, 1st ed. 2022)
Donghai Hu
R4,230 Discovery Miles 42 300 Ships in 18 - 22 working days

This book establishes the models of the electric motor, the hydraulic compound brake system, and the electromagnetic and friction integrated brake system. Considering the two principles on safety and energy saving, it proposes a hybrid brake-by-wire system optimization design method and proposes the optimization method of braking force distribution in different braking modes. The methodology of the book is by using the common Lyapunov function to analyze the stability of the braking mode switching process and designs the braking mode switching controller of the hybrid braking system. The selection of materials provides readers with some guidance in the future design and control of hybrid drive-by-wire systems for autonomous vehicles

Stability Analysis and Control of Powertrain for New Energy Vehicles (Hardcover, 1st ed. 2022): Donghai Hu, Bifeng Yin Stability Analysis and Control of Powertrain for New Energy Vehicles (Hardcover, 1st ed. 2022)
Donghai Hu, Bifeng Yin
R3,980 Discovery Miles 39 800 Ships in 10 - 15 working days

This book introduces the application of nonlinear dynamics theory for driving system of electric vehicle and hybrid electric vehicle respectively. It establishes the dynamic models for driving system of electric vehicle and hybrid electric vehicle under various working conditions. And the nonlinear dynamics theory is applied to the qualitative analysis and quantitative calculation for the models. The theoretical analysis results are applied to guide the optimization of control strategies. In the end of each chapter, corresponding simulations or experiments are provided to verify the corresponding instances which are carefully selected. This book will give some guidance to readers when they deal with nonlinear dynamics problems of vehicles in the future and provide theoretical bases for the further study of the nonlinear dynamics for driving system of electric vehicle and hybrid electric vehicle. The book is written for engineer of electric vehicle and hybrid vehicle, teachers and students majoring in automobile and automation.

Design and Control of Hybrid Brake-by-Wire System for Autonomous Vehicle (Paperback, 1st ed. 2022): Donghai Hu Design and Control of Hybrid Brake-by-Wire System for Autonomous Vehicle (Paperback, 1st ed. 2022)
Donghai Hu
R4,204 Discovery Miles 42 040 Ships in 18 - 22 working days

This book establishes the models of the electric motor, the hydraulic compound brake system, and the electromagnetic and friction integrated brake system. Considering the two principles on safety and energy saving, it proposes a hybrid brake-by-wire system optimization design method and proposes the optimization method of braking force distribution in different braking modes. The methodology of the book is by using the common Lyapunov function to analyze the stability of the braking mode switching process and designs the braking mode switching controller of the hybrid braking system. The selection of materials provides readers with some guidance in the future design and control of hybrid drive-by-wire systems for autonomous vehicles

Stability Analysis and Control of Powertrain for New Energy Vehicles (Paperback, 1st ed. 2022): Donghai Hu, Bifeng Yin Stability Analysis and Control of Powertrain for New Energy Vehicles (Paperback, 1st ed. 2022)
Donghai Hu, Bifeng Yin
R3,973 Discovery Miles 39 730 Ships in 18 - 22 working days

This book introduces the application of nonlinear dynamics theory for driving system of electric vehicle and hybrid electric vehicle respectively. It establishes the dynamic models for driving system of electric vehicle and hybrid electric vehicle under various working conditions. And the nonlinear dynamics theory is applied to the qualitative analysis and quantitative calculation for the models. The theoretical analysis results are applied to guide the optimization of control strategies. In the end of each chapter, corresponding simulations or experiments are provided to verify the corresponding instances which are carefully selected. This book will give some guidance to readers when they deal with nonlinear dynamics problems of vehicles in the future and provide theoretical bases for the further study of the nonlinear dynamics for driving system of electric vehicle and hybrid electric vehicle. The book is written for engineer of electric vehicle and hybrid vehicle, teachers and students majoring in automobile and automation.

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