• Fri frakt över 249 kr
  • •
  • Snabba leveranser
  • •
  • Billiga böcker
Kundservice

Du är på sajten för privatpersoner.

Företag, bibliotek eller offentlig verksamhet?

Du handlar på classic.bokus.com, där alla dina funktioner finns intakta.
Till classic.bokus.com
Bokus logotyp. Gå till startsidan.
  • Erbjudanden
  • Student
  • Topplistor
  • Barn & ungdom
  • Bokus Play
  • E-böcker
  • Ljudböcker
  • Pocketböcker
  • Spel och pussel

Skapa nya rutiner – hälsoböcker upp till 50% →

Sidfot

Mina sidor

    Hjälp

    • Kundservice
    • Vanliga frågor och svar
    • Frakt och leverans
    • Retur vid ångerrätt
    • Reklamera vara
    • Betalning
    • Köpvillkor
    • Allmänna villkor
    • Information om webbplatsens tillgänglighet

    Om Bokus

    • Om oss
    • Pressrum
    • För studenter
    • För företag
    • För bibliotek och offentlig verksamhet
    • För leverantörer
    • Hållbarhet

    Populärt

    • Aktuella erbjudanden
    • Presentkort
    • Studentlitteratur
    • Nya böcker
    • Topplistor
    • Signerade böcker
    • Engelska böcker

    Inspiration

    • Boktips
    • BookTok
    • Barnbokskaraktärer
    • Populära författare
    Logotyp för Bokus
    Följ oss på Facebook (extern länk)Följ oss på Instagram (extern länk)Följ oss på YouTube (extern länk)Följ oss på TikTok (extern länk)
    bokus @ CookiesAnpassa cookiesIntegritetspolicyKöpvillkor
    Till Citymail hemsida (extern länk)Till Budbee hemsida (extern länk)Till Postnord hemsida (extern länk)Till Schenker hemsida (extern länk)Till Early Bird hemsida (extern länk)Till Walleys hemsida (extern länk)
    1. Naturvetenskap och teknik
    2. Teknik och industri
    3. Energiteknik

    Principles of Electric Energy Storage Systems for E-Mobility

    AvSheldon Williamson

    Inbunden, Engelska, 2027

    1 319 kr

    Kommande

    Beskrivning

    Master energy storage system design for electric vehicles Electric vehicles face urgent challenges including high battery costs, slow charging infrastructure, and battery management risks. Principles of Electric Energy Storage Systems for E-Mobility provides engineers and students with comprehensive guidance on designing energy storage systems for transportation electrification applications. Written by Sheldon Williamson, an NSERC Canada Research Chair, this textbook connects academic research with practical product development. The book covers lithium-ion batteries, supercapacitors, and emerging technologies including solid-state batteries and fuel cells. It explores electrical modeling, state estimation techniques, thermal management strategies, and battery sizing methodologies. Chapters address charging methods and international standards including CHAdeMO and CCS, along with second-life applications for grid storage systems. Vehicle-to-grid applications with related control algorithms are explored in depth. The book also includes: Detailed solved examples demonstrating battery capacity calculation, lifetime estimation, thermal modeling, battery cooling, and charging time analysisComprehensive coverage of battery management system design including SOC, SOP, SOH, SOE, and RUL estimation techniquesPractical guidance on supercapacitors and hybrid energy storage systems with comparative analysis against lithium-ion batteriesComplete exploration of charging topologies from constant current-constant voltage to pulse charging with charger sizing examplesIn-depth discussion of second-life battery applications including economic benefits, technical challenges, and grid integration strategiesThis book serves engineers, researchers, and graduate students working in electric vehicle development and energy storage. With case studies, real-world examples, and solved problems throughout, it provides the technical foundation and practical tools needed to design effective energy storage systems for electric transportation applications.

    Produktinformation

    • Utgivningsdatum:2027-01-25
    • Format:Inbunden
    • Språk:Engelska
    • Antal sidor:272
    • Upplaga:27001
    • Förlag:John Wiley & Sons Inc
    • ISBN:9781394334094

    Utforska kategorier

    • Energiteknik inom Naturvetenskap och teknik

    Mer om författaren

    Sheldon Williamson, PhD, is a Professor with the Department of Electrical, Computer, and Software Engineering and the Director of Smart Transportation Electrification and Energy Research (STEER) Group at Ontario Tech University. He holds the NSERC Canada Research Chair position in electric energy storage systems for transportation electrification.

    Innehållsförteckning

    • Table of ContentsChapter 1: Introduction to Electric Energy Storage Systems                                    1.            Introduction                                                                                                                                     2.            Advances in Battery Technologies                                                                                                        2.1.        Battery Management and Charging Strategies                                                                2.2.        Vehicle-to-Grid and Second-Life Applications                                                               3.            Classification of Energy Storage Technologies                                                                3.1.        Chemical Energy Storage                                                                                                          3.2. Electrical Energy Storage                                                                                                 3.3. Electrochemical Energy Storage                                                                                  3.4. Electromagnetic Energy Storage                                                                                  3.5. Mechanical Energy Storage                                                                                                             3.6. Thermal Energy Storage                                                                                                    4.            Hybrid Energy Storage Systems                                                                                                             5.            Comparative Analysis and Applications                                                                                            6.            Challenges and Future Directions                                                                                                        7.            Emerging Technologies: Looking Forward                                                                                         Chapter 2: Battery Fundamentals1.            1. Introduction                                                                                                                                1.1.        Historical development of battery technology                                                               1.2.        Historical development of automotive propulsion for electric vehicles             2.            Different Battery Types                                                                                                               3.            Construction                                                                                                                                   4.            Operating Principles                                                                                                                   5.            Internal Kinetics                                                                                                                                            6.            Charging and Discharging Characteristics                                                                                       7.            Battery Management System (BMS)                                                                                     7.1.        Battery Monitoring and State Estimation                                                                           7.2.        Safety Management                                                                                                                    7.3.        Battery Performance Optimization                                                                                      7.4.        Longevity Enhancement                                                                                                            7.5.        Thermal Management                                                                                                                7.6.        Energy Efficiency                                                                                                                           7.7.        Communications and Control                                                                                                7.8.        Architecture of LIBs with BMS                                                                                 7.9.        Protection in BMS                                                                                                                         7.10.     Communication in BMS                                                                                                             7.11.     7.11 Data Monitoring                                                                                                                   7.12.     CAN Bus Data Decoder                                               `                                                            8.            Introduction to Configurations and System Design Consideration                                       9.            Battery Degradation                                                                                                                    10.         Characteristics and performance of lithium-ion batteries                                                        11.         States of battery                                                                                                                                            11.1.     State of charge (SOC)                                                                                                                  11.2.     State of power (SOP)                                                                                                    11.3.     State of health (SOH)                                                                                                   11.4.     State of temperature (SOT)                                                                                       11.5.     State of energy (SOE)                                                                                                   11.6.     Remaining useful life (RUL)                                                                                       12.         Solved examples on calculating battery capacity, estimation of battery lifetime            Chapter 3: Alternative Energy Storage Devices: Supercapacitors & Fuel Cells1.            Introduction                                                                                                                                     2.            Supercapacitors                                                                                                                                           3.            Fuel Cells                                                                                                                                                          3.1.        Fuel cell types                                                                                                                                 3.1.1.    Polymer-electrolyte membrane fuel cells (PEMFCs)                                   3.1.2.    Alkaline                                                                                                                                             3.1.3.    Solid Oxide                                                                                                                      3.1.4.    Phosphoric acid                                                                                                                            3.1.5.    Molten carbonate                                                                                                         4.            Hybrid Systems                                                                                                                                             4.1.        Battery/Supercapacitor                                                                                                             4.2.        Battery/Fuel Cell                                                                                                                           5.            Conclusions                                                                                                                                      Chapter 4: Electrical Circuit Modeling, State Estimation, and Battery Pack Design                                                                                                                                                                                      1.            Introduction                                                                                                                                     2.            Battery Sizing                                                                                                                                  2.1.        Key Parameters for Battery Sizing                                                                                          2.1.1.    Electrode Materials, Cell Voltage and Cell sizing                                                          2.1.2.    Specific Capacity, Ah vs Wh, and Energy Density                                                         2.1.3.    C-Rate, Power Capability, and Rate-Dependent Capacity                                       2.2.        Battery Capacity and Power Sizing Methodology                                                           2.2.1.    Energy-Based Sizing                                                                                                   2.2.2.    Voltage Determination and Series Cell Configuration                                                2.2.3.    Capacity Scaling and Parallel Cell Configuration                                                         2.2.4.    Power-Based Sizing and C-Rate Constraints                                                  3.            Lithium-ion Battery States                                                                                                                        3.1.        State-of-Charge (SOC)                                                                                                                3.1.1.    Direct Methods                                                                                                                             3.1.2.    Model-Based Estimation Methods                                                                      3.1.3.    Adaptive Methods                                                                                                        3.1.4.    Hybrid SOC Estimation Approaches                                                                   3.2.        Depth of Discharge (DOD)                                                                                                         3.3.        State of Health (SOH)                                                                                                                  3.3.1.    Experimental Method                                                                                                3.3.2.    Model Based Methods                                                                                               3.4.        Remaining Useful Life                                                                                                 3.5.        State of Temperature (SOT)                                                                                                       4.            Battery Thermal Management System                                                                                               4.1.        Lithium-Ion Battery Thermal Behavior                                                                               4.2.        Thermal Management Techniques for EV Battery Packs                                                            4.3.        Lumped Thermal Modeling of Battery Packs                                                                                    5.            Battery management systems design                                                                                                   Chapter 5: Battery Charging Systems                                                                                 1.            Introduction                                                                                                                                     2.            Fundamentals of Battery Charging                                                                                                       3.            Charging Strategies                                                                                                                     3.1.        Constant Current-Constant Voltage (CC-CV)                                                                  3.2.        Multi-Stage Constant Current (MSCC)                                                                                3.3.        Pulse Charging                                                                                                               3.4.        Constant Temperature-Constant Voltage (CT-CV)                                                        4.            Charging Standards                                                                                                                     5.            Different charging levels                                                                                                                            5.1.        Level 1 Charging                                                                                                                            5.2.        Level 2 Charging                                                                                                                            5.3.        Level 3 Charging (DC Fast Charging)                                                                                    6.            Emerging Electric Vehicle Charging Approaches                                                                           7.            Power-Electronic Interfaces for Battery Charging                                                                          7.1.        AC Charging Architecture (Level 1 and Level 2)                                                               7.2.        DC Fast Charging Architecture (Level 3)                                                                            8.            Solved Examples of Battery Charging                                                                                    Chapter 6: Second-life Applications of Retired EV Batteries                                   1.            Introduction                                                                                                                                     2.            Motivation, Challenges, and Value Proposition                                                                              2.1.        Why second life is attractive from an energy and electrical perspective            2.2.        Key technical challenges: heterogeneity, uncertainty, and bankability2.3.        Diagnostics, grading, and compliance considerations                                               2.4.        Value proposition across environmental, economic, and grid dimensions       3.            Taxonomy of Second-Life Applications                                                                                              3.1.        Classification by Mobility Level                                                                                             3.2.        Use Cases and Technical Requirements                                                                           3.3.        Repurposing Level and Integration Implications                                                            4.            Performance Metrics of Second-Life Applications                                                                       4.1.        Technical Performance Metrics                                                                                             4.2.        Economic Performance Metrics                                                                                            4.3.        Environmental and Sustainability Performance Metrics                                            4.4.        Reliability and Operational Performance Metrics                                                         4.5.        Application-Specific Performance Metrics                                                                      4.6.        Multi-Criteria Evaluation and Composite Index Development                                5.            Assessment, Testing, and Grading workflows                                                                 5.1.        Second-life Battery SOH Estimation and Ageing Models                                           5.2.        Degradation Data from First Use                                                                                           5.3.        Screening, Sorting, and Repurposing                                                                                  5.4.        Safety and Regulatory Compliance Testing                                                                      6.            Grading, Classification, and Application Matching                                                                      6.1.        Purpose and Decision-Gate Role                                                                                          6.2.        Grade A/B/C Logic and Thresholding                                                                                   6.3.        Capacity–Resistance Trade-offs and Power Capability                                              6.4.        Mapping Grades to Second-Life Applications                                                                 6.5.        Interface with Techno-economic Assessment                                                               7.            Deployment Domains and Case Studies for Second-Life Batteries                                      7.1.        Stationary Second-Life Applications                                                                                   7.2.        Illustrative Lifetime Sensitivity Across Use Cases                                                         7.3.        Economic Note on Service Stacking                                                                                    8.            Future Trends and Innovations                                                                                               8.1.        Digital-Twin-Based Diagnostics and Health-Aware Operation                8.2.        AI-Driven SOH and RUL Estimation Under Heterogeneity                                         8.3.        Standardized Refurbishment and Integration Architectures                                    8.4.        Service-Based Business Models and Risk Allocation                                                                  8.5.        Grid-Interactive and Aggregated SLB Fleets                                                                     9.            Conclusions and Outlook                                                                                                                         10.         Additional Solved Examples                                                                                                                      Chapter 7: Advanced Topics and Emerging Technologies                                                          1.            Introduction                                                                                                                                     2.            Decentralized Energy Storage System                                                                                3.            Major Components of Decentralized Energy Storage Systems                               3.1.        Energy Storage Medium                                                                                                             3.2.        Power Conversion System (PCS)                                                                                           3.3.        Battery Management System (BMS)                                                                                     3.4.        Energy Management System (EMS)                                                                                      3.5.        Communication and Control Infrastructure                                                                    3.6.        Protection, Safety, and Auxiliary Systems                                                                         4.            Detailed Insights into Core Applications                                                                                           4.1.        Microgrids: Resilient Local Ecosystems                                                                            4.2.        Virtual Power Plants (VPPs): Digital Power Stations                                                      4.3.        Prosumer Integration and Peer-to-Peer (P2P) Trading                                 4.4.        Vehicle-to-Grid (V2G) Technology                                                                                        5.            Integration of Energy Storage with Renewable Energy Systems                                              6.            Application of energy storage in microgrids and remote areas                               7.            Integration of EVs into grid                                                                                                        7.1.        Technical Challenges of Large-Scale EV Integration                                                    7.2.        Vehicle to grid application                                                                                                        7.3.        Vehicle to home application                                                                                                    7.4.        Related algorithms                                                                                                                         Chapter 8: Conclusions and Future Directions                                                                              1.            Summary of Key Concepts                                                                                                                       1.1.        Fundamentals of Lithium-Ion Batteries                                                                             1.2.        Alternative Storage and Hybrid Systems                                                                           1.3.        Modeling and State Estimation                                                                                              1.4.        Charging Systems and Infrastructure                                                                                 2.            Challenges and Opportunities in Electric Energy Storage                                                          2.1.        Degradation and Aging                                                                                                2.2.        Thermal Management and Safety                                                                                         2.3.        State Estimation Complexity                                                                                                  2.4.        Grid Integration and Second-Life Applications                                               3.            Future Directions in Energy Storage Research and Development                                          4.            Concluding Remarks
    Hoppa över listan

    Mer från samma författare

    Vitor Monteiro, Jo�o L. Afonso, Sheldon Williamson - Vehicle Electrification in Modern Power Grids, Häftad

    Vehicle Electrification in Modern Power Grids

    Vitor Monteiro, Jo�o L. Afonso, Sheldon Williamson

    Häftad, 2024

    1 573 kr

    Sheldon Williamson, Joao L. Afonso, Vitor Monteiro - Vehicle Electrification in Modern Power Grids, E-bok

    Vehicle Electrification in Modern Power Grids

    Sheldon Williamson, Joao L. Afonso, Vitor Monteiro

    E-bok
    2024

    2 237 kr

    Sheldon Williamson, Akash Samanta - Battery Technologies for E-Mobility, E-bok

    Battery Technologies for E-Mobility

    Sheldon Williamson, Akash Samanta

    E-bok
    2025

    1 934 kr

    Andrei Blinov, Sheldon Williamson - Power Electronics and Energy Management for Battery Storage Systems, Inbunden

    Power Electronics and Energy Management for Battery Storage Systems

    Andrei Blinov, Sheldon Williamson

    Inbunden, 2022

    638 kr

    Akash Samanta, Sheldon Williamson - Battery Technologies for E-Mobility, Inbunden

    Battery Technologies for E-Mobility

    Akash Samanta, Sheldon Williamson

    Inbunden, 2025

    1 615 kr

    Pierluigi Siano, Sheldon Williamson, Sabeena Beevi - Intelligent Solutions for Smart Grids and Smart Cities, Inbunden
    Del 1022

    Intelligent Solutions for Smart Grids and Smart Cities

    Pierluigi Siano, Sheldon Williamson, Sabeena Beevi

    Inbunden, 2023

    3 219 kr

    Sabeena Beevi, Sheldon Williamson, Pierluigi Siano - Intelligent Solutions for Smart Grids and Smart Cities, E-bok

    Intelligent Solutions for Smart Grids and Smart Cities

    Sabeena Beevi, Sheldon Williamson, Pierluigi Siano

    E-bok
    2023

    3 945 kr

    Pierluigi Siano, Sheldon Williamson - Intelligent Solutions for Smart Grids and Smart Cities : Select Proceedings of IPECS 2022, Övrigt

    Intelligent Solutions for Smart Grids and Smart Cities : Select Proceedings of IPECS 2022

    Pierluigi Siano, Sheldon Williamson

    625 kr

    Pierluigi Siano, Sheldon Williamson, Sabeena Beevi - Intelligent Solutions for Smart Grids and Smart Cities, Häftad
    Del 1022

    Intelligent Solutions for Smart Grids and Smart Cities

    Pierluigi Siano, Sheldon Williamson, Sabeena Beevi

    Häftad, 2024

    3 219 kr

    Hoppa över listan

    Du kanske också är intresserad av

    Jan Lucassen - Money, Trade and Shifting Financial Centres, 1000 – 1800, Inbunden

    Money, Trade and Shifting Financial Centres, 1000 – 1800

    Jan Lucassen

    Inbunden, 2027

    2 807 kr

    Sabeena Beevi, Sheldon Williamson, Pierluigi Siano - Intelligent Solutions for Smart Grids and Smart Cities, E-bok

    Intelligent Solutions for Smart Grids and Smart Cities

    Sabeena Beevi, Sheldon Williamson, Pierluigi Siano

    E-bok
    2023

    3 945 kr

    Keith L Dougherty - Shifting Seats, Häftad

    Shifting Seats

    Keith L Dougherty

    Häftad, 2027

    678 kr

    Miguel Garcia-Ruiz - Developing Immersive 3D Games with Godot 4, Häftad

    Developing Immersive 3D Games with Godot 4

    Miguel Garcia-Ruiz

    Häftad, 2027

    609 kr

    Vitor Monteiro, Jo�o L. Afonso, Sheldon Williamson - Vehicle Electrification in Modern Power Grids, Häftad

    Vehicle Electrification in Modern Power Grids

    Vitor Monteiro, Jo�o L. Afonso, Sheldon Williamson

    Häftad, 2024

    1 573 kr

    Pierluigi Siano, Sheldon Williamson, Sabeena Beevi - Intelligent Solutions for Smart Grids and Smart Cities, Häftad
    Del 1022

    Intelligent Solutions for Smart Grids and Smart Cities

    Pierluigi Siano, Sheldon Williamson, Sabeena Beevi

    Häftad, 2024

    3 219 kr

    Akash Samanta, Sheldon Williamson - Battery Technologies for E-Mobility, Inbunden

    Battery Technologies for E-Mobility

    Akash Samanta, Sheldon Williamson

    Inbunden, 2025

    1 615 kr

    Sheldon Williamson, Akash Samanta - Battery Technologies for E-Mobility, E-bok

    Battery Technologies for E-Mobility

    Sheldon Williamson, Akash Samanta

    E-bok
    2025

    1 934 kr

    Pierluigi Siano, Sheldon Williamson, Sabeena Beevi - Intelligent Solutions for Smart Grids and Smart Cities, Inbunden
    Del 1022

    Intelligent Solutions for Smart Grids and Smart Cities

    Pierluigi Siano, Sheldon Williamson, Sabeena Beevi

    Inbunden, 2023

    3 219 kr

    Andrei Blinov, Sheldon Williamson - Power Electronics and Energy Management for Battery Storage Systems, Inbunden

    Power Electronics and Energy Management for Battery Storage Systems

    Andrei Blinov, Sheldon Williamson

    Inbunden, 2022

    638 kr