Hybrid electric vehicle system modeling and control: Introduction to hybrid vehicle system modeling and control
Gespeichert in:
1. Verfasser: | |
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Format: | Elektronisch E-Book |
Sprache: | English |
Veröffentlicht: |
Chichester, West Sussex
Wiley
[2017]
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Ausgabe: | 2nd edition |
Schlagworte: | |
Online-Zugang: | FCO01 FRO01 FWS01 FWS02 UBG01 Volltext |
Beschreibung: | Revised edition of: Introduction to hybrid vehicle system modeling and control |
Beschreibung: | 1 online resource |
ISBN: | 9781119279334 111927933X 9781119278924 1119278929 |
Internformat
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245 | 1 | 0 | |a Hybrid electric vehicle system modeling and control |b Introduction to hybrid vehicle system modeling and control |c Wei (Kevin) Liu |
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264 | 1 | |a Chichester, West Sussex |b Wiley |c [2017] | |
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500 | |a Revised edition of: Introduction to hybrid vehicle system modeling and control | ||
505 | 8 | |a Includes bibliographical references and index | |
505 | 8 | |a Title Page ; Copyright Page ; Contents; Preface; List of Abbreviations; Nomenclature; Chapter 1 Introduction ; 1.1 Classification of Hybrid Electric Vehicles; 1.1.1 Micro Hybrid Electric Vehicles; 1.1.2 Mild Hybrid Electric Vehicles; 1.1.3 Full Hybrid Electric Vehicles; 1.1.4 Electric Vehicles; 1.1.5 Plug-in Hybrid Electric Vehicles; 1.2 General Architectures of Hybrid Electric Vehicles; 1.2.1 Series Hybrid; 1.2.2 Parallel Hybrid; 1.2.3 Series-Parallel Hybrid; 1.3 Typical Layouts of the Parallel Hybrid Electric Propulsion System; 1.4 Hybrid Electric Vehicle System Components | |
505 | 8 | |a 1.5 Hybrid Electric Vehicle System Analysis1.5.1 Power Flow of Hybrid Electric Vehicles; 1.5.2 Fuel Economy Benefits of Hybrid Electric Vehicles; 1.5.3 Typical Drive Cycles; 1.5.4 Vehicle Drivability; 1.5.5 Hybrid Electric Vehicle Fuel Economy and Emissions; 1.6 Controls of Hybrid Electric Vehicles; References; Chapter 2 Basic Components of Hybrid Electric Vehicles ; 2.1 The Prime Mover; 2.1.1 Gasoline Engines; 2.1.2 Diesel Engines; 2.1.3 Fuel Cells; 2.2 Electric Motor with a DC-DC Converter and a DC-AC Inverter; 2.3 Energy Storage System | |
505 | 8 | |a 2.3.1 Energy Storage System Requirements for Hybrid Electric Vehicles2.3.2 Basic Types of Battery for Hybrid Electric Vehicle System Applications; 2.3.3 Ultracapacitors for Hybrid Electric Vehicle System Applications; 2.4 Transmission System in Hybrid Electric Vehicles; References; Chapter 3 Hybrid Electric Vehicle System Modeling ; 3.1 Modeling of an Internal Combustion Engine; 3.1.1 Cranking (Key Start); 3.1.2 Engine Off; 3.1.3 Idle; 3.1.4 Engine On; 3.1.5 Engine Fuel Economy and Emissions; 3.2 Modeling of an Electric Motor; 3.2.1 Operation in the Propulsion Mode | |
505 | 8 | |a 3.2.2 Operation in the Regenerative Mode3.2.3 Operation in Spinning Mode; 3.3 Modeling of the Battery System; 3.3.1 Modeling Electrical Behavior; 3.3.2 SOC Calculation; 3.3.3 Modeling Thermal Behavior; 3.4 Modeling of the Transmission System; 3.4.1 Modeling of the Clutch and Power Split Device; 3.4.1.1 Clutch Control Signal=011; 3.4.1.2 Clutch Control Signal=101; 3.4.1.3 Clutch Control Signal=110; 3.4.1.4 Clutch Control Signal=111; 3.4.2 Modeling of the Torque Converter; 3.4.3 Modeling of the Gearbox; 3.4.4 Modeling of the Transmission Controller | |
505 | 8 | |a 3.5 Modeling of a Multi-mode Electrically Variable Transmission3.5.1 Basics of One-mode ECVT; 3.5.2 Basics of Two-mode ECVT; 3.6 Lever Analogy as a Tool for ECVT Kinematic Analysis; 3.6.1 Lever System Diagram Set-up; 3.6.2 Lever Analogy Diagram for ECVT Kinematic Analysis; 3.7 Modeling of the Vehicle Body; 3.8 Modeling of the Final Drive and Wheel; 3.8.1 Final Drive Model; 3.8.2 Wheel Model; 3.9 PID-based Driver Model; 3.9.1 Principle of PID Control; 3.9.2 Driver Model; References; Chapter 4 Power Electronics and Electric Motor Drives in Hybrid Electric Vehicles | |
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Datensatz im Suchindex
DE-BY-FWS_katkey | 691165 |
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any_adam_object | |
author | Liu, Wei 1960- |
author_GND | (DE-588)1034586343 |
author_facet | Liu, Wei 1960- |
author_role | aut |
author_sort | Liu, Wei 1960- |
author_variant | w l wl |
building | Verbundindex |
bvnumber | BV044286409 |
classification_rvk | ZO 4480 ZO 4490 |
collection | ZDB-35-WIC |
contents | Includes bibliographical references and index Title Page ; Copyright Page ; Contents; Preface; List of Abbreviations; Nomenclature; Chapter 1 Introduction ; 1.1 Classification of Hybrid Electric Vehicles; 1.1.1 Micro Hybrid Electric Vehicles; 1.1.2 Mild Hybrid Electric Vehicles; 1.1.3 Full Hybrid Electric Vehicles; 1.1.4 Electric Vehicles; 1.1.5 Plug-in Hybrid Electric Vehicles; 1.2 General Architectures of Hybrid Electric Vehicles; 1.2.1 Series Hybrid; 1.2.2 Parallel Hybrid; 1.2.3 Series-Parallel Hybrid; 1.3 Typical Layouts of the Parallel Hybrid Electric Propulsion System; 1.4 Hybrid Electric Vehicle System Components 1.5 Hybrid Electric Vehicle System Analysis1.5.1 Power Flow of Hybrid Electric Vehicles; 1.5.2 Fuel Economy Benefits of Hybrid Electric Vehicles; 1.5.3 Typical Drive Cycles; 1.5.4 Vehicle Drivability; 1.5.5 Hybrid Electric Vehicle Fuel Economy and Emissions; 1.6 Controls of Hybrid Electric Vehicles; References; Chapter 2 Basic Components of Hybrid Electric Vehicles ; 2.1 The Prime Mover; 2.1.1 Gasoline Engines; 2.1.2 Diesel Engines; 2.1.3 Fuel Cells; 2.2 Electric Motor with a DC-DC Converter and a DC-AC Inverter; 2.3 Energy Storage System 2.3.1 Energy Storage System Requirements for Hybrid Electric Vehicles2.3.2 Basic Types of Battery for Hybrid Electric Vehicle System Applications; 2.3.3 Ultracapacitors for Hybrid Electric Vehicle System Applications; 2.4 Transmission System in Hybrid Electric Vehicles; References; Chapter 3 Hybrid Electric Vehicle System Modeling ; 3.1 Modeling of an Internal Combustion Engine; 3.1.1 Cranking (Key Start); 3.1.2 Engine Off; 3.1.3 Idle; 3.1.4 Engine On; 3.1.5 Engine Fuel Economy and Emissions; 3.2 Modeling of an Electric Motor; 3.2.1 Operation in the Propulsion Mode 3.2.2 Operation in the Regenerative Mode3.2.3 Operation in Spinning Mode; 3.3 Modeling of the Battery System; 3.3.1 Modeling Electrical Behavior; 3.3.2 SOC Calculation; 3.3.3 Modeling Thermal Behavior; 3.4 Modeling of the Transmission System; 3.4.1 Modeling of the Clutch and Power Split Device; 3.4.1.1 Clutch Control Signal=011; 3.4.1.2 Clutch Control Signal=101; 3.4.1.3 Clutch Control Signal=110; 3.4.1.4 Clutch Control Signal=111; 3.4.2 Modeling of the Torque Converter; 3.4.3 Modeling of the Gearbox; 3.4.4 Modeling of the Transmission Controller 3.5 Modeling of a Multi-mode Electrically Variable Transmission3.5.1 Basics of One-mode ECVT; 3.5.2 Basics of Two-mode ECVT; 3.6 Lever Analogy as a Tool for ECVT Kinematic Analysis; 3.6.1 Lever System Diagram Set-up; 3.6.2 Lever Analogy Diagram for ECVT Kinematic Analysis; 3.7 Modeling of the Vehicle Body; 3.8 Modeling of the Final Drive and Wheel; 3.8.1 Final Drive Model; 3.8.2 Wheel Model; 3.9 PID-based Driver Model; 3.9.1 Principle of PID Control; 3.9.2 Driver Model; References; Chapter 4 Power Electronics and Electric Motor Drives in Hybrid Electric Vehicles |
ctrlnum | (OCoLC)992497597 (DE-599)BVBBV044286409 |
discipline | Verkehr / Transport |
edition | 2nd edition |
format | Electronic eBook |
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id | DE-604.BV044286409 |
illustrated | Not Illustrated |
indexdate | 2024-08-01T13:18:02Z |
institution | BVB |
isbn | 9781119279334 111927933X 9781119278924 1119278929 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-029690640 |
oclc_num | 992497597 |
open_access_boolean | |
owner | DE-861 DE-862 DE-BY-FWS DE-863 DE-BY-FWS DE-858 |
owner_facet | DE-861 DE-862 DE-BY-FWS DE-863 DE-BY-FWS DE-858 |
physical | 1 online resource |
psigel | ZDB-35-WIC UBG_PDA_WIC ZDB-35-WIC FCO_PDA_WIC_Kauf ZDB-35-WIC FRO_PDA_WIC ZDB-35-WIC UBG_PDA_WIC |
publishDate | 2017 |
publishDateSearch | 2017 |
publishDateSort | 2017 |
publisher | Wiley |
record_format | marc |
spellingShingle | Liu, Wei 1960- Hybrid electric vehicle system modeling and control Introduction to hybrid vehicle system modeling and control Includes bibliographical references and index Title Page ; Copyright Page ; Contents; Preface; List of Abbreviations; Nomenclature; Chapter 1 Introduction ; 1.1 Classification of Hybrid Electric Vehicles; 1.1.1 Micro Hybrid Electric Vehicles; 1.1.2 Mild Hybrid Electric Vehicles; 1.1.3 Full Hybrid Electric Vehicles; 1.1.4 Electric Vehicles; 1.1.5 Plug-in Hybrid Electric Vehicles; 1.2 General Architectures of Hybrid Electric Vehicles; 1.2.1 Series Hybrid; 1.2.2 Parallel Hybrid; 1.2.3 Series-Parallel Hybrid; 1.3 Typical Layouts of the Parallel Hybrid Electric Propulsion System; 1.4 Hybrid Electric Vehicle System Components 1.5 Hybrid Electric Vehicle System Analysis1.5.1 Power Flow of Hybrid Electric Vehicles; 1.5.2 Fuel Economy Benefits of Hybrid Electric Vehicles; 1.5.3 Typical Drive Cycles; 1.5.4 Vehicle Drivability; 1.5.5 Hybrid Electric Vehicle Fuel Economy and Emissions; 1.6 Controls of Hybrid Electric Vehicles; References; Chapter 2 Basic Components of Hybrid Electric Vehicles ; 2.1 The Prime Mover; 2.1.1 Gasoline Engines; 2.1.2 Diesel Engines; 2.1.3 Fuel Cells; 2.2 Electric Motor with a DC-DC Converter and a DC-AC Inverter; 2.3 Energy Storage System 2.3.1 Energy Storage System Requirements for Hybrid Electric Vehicles2.3.2 Basic Types of Battery for Hybrid Electric Vehicle System Applications; 2.3.3 Ultracapacitors for Hybrid Electric Vehicle System Applications; 2.4 Transmission System in Hybrid Electric Vehicles; References; Chapter 3 Hybrid Electric Vehicle System Modeling ; 3.1 Modeling of an Internal Combustion Engine; 3.1.1 Cranking (Key Start); 3.1.2 Engine Off; 3.1.3 Idle; 3.1.4 Engine On; 3.1.5 Engine Fuel Economy and Emissions; 3.2 Modeling of an Electric Motor; 3.2.1 Operation in the Propulsion Mode 3.2.2 Operation in the Regenerative Mode3.2.3 Operation in Spinning Mode; 3.3 Modeling of the Battery System; 3.3.1 Modeling Electrical Behavior; 3.3.2 SOC Calculation; 3.3.3 Modeling Thermal Behavior; 3.4 Modeling of the Transmission System; 3.4.1 Modeling of the Clutch and Power Split Device; 3.4.1.1 Clutch Control Signal=011; 3.4.1.2 Clutch Control Signal=101; 3.4.1.3 Clutch Control Signal=110; 3.4.1.4 Clutch Control Signal=111; 3.4.2 Modeling of the Torque Converter; 3.4.3 Modeling of the Gearbox; 3.4.4 Modeling of the Transmission Controller 3.5 Modeling of a Multi-mode Electrically Variable Transmission3.5.1 Basics of One-mode ECVT; 3.5.2 Basics of Two-mode ECVT; 3.6 Lever Analogy as a Tool for ECVT Kinematic Analysis; 3.6.1 Lever System Diagram Set-up; 3.6.2 Lever Analogy Diagram for ECVT Kinematic Analysis; 3.7 Modeling of the Vehicle Body; 3.8 Modeling of the Final Drive and Wheel; 3.8.1 Final Drive Model; 3.8.2 Wheel Model; 3.9 PID-based Driver Model; 3.9.1 Principle of PID Control; 3.9.2 Driver Model; References; Chapter 4 Power Electronics and Electric Motor Drives in Hybrid Electric Vehicles TECHNOLOGY & ENGINEERING / Engineering (General) bisacsh Mathematisches Modell Hybrid electric vehicles / Simulation methods Hybrid electric vehicles / Mathematical models Hybridfahrzeug (DE-588)7524499-8 gnd Antriebsregelung (DE-588)4142753-1 gnd Energiemanagement (DE-588)4124833-8 gnd Fahrzeugantrieb (DE-588)4123177-6 gnd Kraftfahrzeug (DE-588)4073757-3 gnd Hybridantrieb (DE-588)4160835-5 gnd Antrieb Technik (DE-588)4002360-6 gnd Simulation (DE-588)4055072-2 gnd Energiespeicher (DE-588)4152230-8 gnd |
subject_GND | (DE-588)7524499-8 (DE-588)4142753-1 (DE-588)4124833-8 (DE-588)4123177-6 (DE-588)4073757-3 (DE-588)4160835-5 (DE-588)4002360-6 (DE-588)4055072-2 (DE-588)4152230-8 |
title | Hybrid electric vehicle system modeling and control Introduction to hybrid vehicle system modeling and control |
title_auth | Hybrid electric vehicle system modeling and control Introduction to hybrid vehicle system modeling and control |
title_exact_search | Hybrid electric vehicle system modeling and control Introduction to hybrid vehicle system modeling and control |
title_full | Hybrid electric vehicle system modeling and control Introduction to hybrid vehicle system modeling and control Wei (Kevin) Liu |
title_fullStr | Hybrid electric vehicle system modeling and control Introduction to hybrid vehicle system modeling and control Wei (Kevin) Liu |
title_full_unstemmed | Hybrid electric vehicle system modeling and control Introduction to hybrid vehicle system modeling and control Wei (Kevin) Liu |
title_short | Hybrid electric vehicle system modeling and control |
title_sort | hybrid electric vehicle system modeling and control introduction to hybrid vehicle system modeling and control |
title_sub | Introduction to hybrid vehicle system modeling and control |
topic | TECHNOLOGY & ENGINEERING / Engineering (General) bisacsh Mathematisches Modell Hybrid electric vehicles / Simulation methods Hybrid electric vehicles / Mathematical models Hybridfahrzeug (DE-588)7524499-8 gnd Antriebsregelung (DE-588)4142753-1 gnd Energiemanagement (DE-588)4124833-8 gnd Fahrzeugantrieb (DE-588)4123177-6 gnd Kraftfahrzeug (DE-588)4073757-3 gnd Hybridantrieb (DE-588)4160835-5 gnd Antrieb Technik (DE-588)4002360-6 gnd Simulation (DE-588)4055072-2 gnd Energiespeicher (DE-588)4152230-8 gnd |
topic_facet | TECHNOLOGY & ENGINEERING / Engineering (General) Mathematisches Modell Hybrid electric vehicles / Simulation methods Hybrid electric vehicles / Mathematical models Hybridfahrzeug Antriebsregelung Energiemanagement Fahrzeugantrieb Kraftfahrzeug Hybridantrieb Antrieb Technik Simulation Energiespeicher |
url | https://onlinelibrary.wiley.com/doi/book/10.1002/9781119278924 |
work_keys_str_mv | AT liuwei hybridelectricvehiclesystemmodelingandcontrolintroductiontohybridvehiclesystemmodelingandcontrol |