scispace - formally typeset
Open AccessBook

Modern electric, hybrid electric, and fuel cell vehicles : fundamentals, theory, and design

Reads0
Chats0
TLDR
This document discusses the design and control principles of the Hybrid Electric Drive Trains, and the designs of the Drive Train Engine/Generator Power Design and Energy Design of Energy Storage Appendices Index.
Abstract
Environmental Impact and History of Modern Transportation Air Pollution Global Warming Petroleum Resources Induced Costs Importance of Different Transportation Development Strategies to Future Oil Supply History of EVs History of HEVs History of Fuel Cell Vehicles Fundamentals of Vehicle Propulsion and Brake General Description of Vehicle Movement Vehicle Resistance Dynamic Equation Tire-Ground Adhesion and Maximum Tractive Effort Power Train Tractive Effort and Vehicle Speed Vehicle Power Plant and Transmission Characteristics Vehicle Performance Operating Fuel Economy Brake Performance Internal Combustion Engines 4S, Spark-Ignited IC Engines 4S, Compression-Ignition IC Engines 2S Engines Wankel Rotary Engines Stirling Engines Gas Turbine Engines Quasi-Isothermal Brayton Cycle Engines Electric Vehicles Configurations of EVs Performance of EVs Tractive Effort in Normal Driving Energy Consumption Hybrid Electric Vehicles Concept of Hybrid Electric Drive Trains Architectures of Hybrid Electric Drive Trains Electric Propulsion Systems DC Motor Drives Induction Motor Drives Permanent Magnetic BLDC Motor Drives SRM Drives Design Principle of Series (Electrical Coupling) Hybrid Electric Drive Train Operation Patterns Control Strategies Design Principles of a Series (Electrical Coupling) Hybrid Drive Train Design Example Parallel (Mechanically Coupled) Hybrid Electric Drive Train Design Drive Train Configuration and Design Objectives Control Strategies Parametric Design of a Drive Train Simulations Design and Control Methodology of Series-Parallel (Torque and Speed Coupling) Hybrid Drive Train Drive Train Configuration Drive Train Control Methodology Drive Train Parameters Design Simulation of an Example Vehicle Design and Control Principles of Plug-In Hybrid Electric Vehicles Statistics of Daily Driving Distance Energy Management Strategy Energy Storage Design Mild Hybrid Electric Drive Train Design Energy Consumed in Braking and Transmission Parallel Mild Hybrid Electric Drive Train Series-Parallel Mild Hybrid Electric Drive Train Peaking Power Sources and Energy Storages Electrochemical Batteries Ultracapacitors Ultra-High-Speed Flywheels Hybridization of Energy Storages Fundamentals of Regenerative Breaking Braking Energy Consumed in Urban Driving Braking Energy versus Vehicle Speed Braking Energy versus Braking Power Braking Power versus Vehicle Speed Braking Energy versus Vehicle Deceleration Rate Braking Energy on Front and Rear Axles Brake System of EV, HEV, and FCV Fuel Cells Operating Principles of Fuel Cells Electrode Potential and Current-Voltage Curve Fuel and Oxidant Consumption Fuel Cell System Characteristics Fuel Cell Technologies Fuel Supply Non-Hydrogen Fuel Cells Fuel Cell Hybrid Electric Drive Train Design Configuration Control Strategy Parametric Design Design Example Design of Series Hybrid Drive Train for Off-Road Vehicles Motion Resistance Tracked Series Hybrid Vehicle Drive Train Architecture Parametric Design of the Drive Train Engine/Generator Power Design Power and Energy Design of Energy Storage Appendices Index

read more

Citations
More filters
Journal ArticleDOI

Modeling and fabricating a prototype of a thermoelectric generator system of heat energy recovery from hot exhaust gases and evaluating the effects of important system parameters

TL;DR: In this article, the authors deal with the general modeling of a thermoelectric generator system, including the modeling of the cooling system for the cold side of the generator, system of heat transfer from the smokestack to the hot side, and also the modelling of the thermistors themselves.
Journal ArticleDOI

Protection and grounding methods in DC microgrids: Comprehensive review and analysis

TL;DR: An extensive review of fault characteristics of DCMGs and the protection challenges is presented, and innovative protection techniques proposed to solve these issues are proposed, and comparative analysis of these techniques are presented outlining the strengths and drawbacks of each.
Proceedings ArticleDOI

Modeling and control of a four wheel drive parallel hybrid electric vehicle

TL;DR: In this paper, a four wheel drive parallel hybrid electric vehicle is built by assembling an auxiliary electrical machine and battery group, and a rule-based control strategy is developed by setting transition rules between the two power sources.
Proceedings ArticleDOI

Integrated electro-mechanical transmission systems in hybrid electric vehicles

TL;DR: In this article, the authors present a comprehensive review of various integrated powertrains including the power split, two-mode hybrid transmission systems, and the electric variable transmission, as well as fundamental principles and mechanisms of operation for these integrated electro-mechanical transmission systems.
Proceedings ArticleDOI

Optimization of a multi-speed electric axle as a function of the electric motor properties

TL;DR: The selection of the gear ratios for the multi-speed application is described in detail for a case study vehicle, for two different electric motor units.