Electric Vehicle Charging: Infrastructure and Global Markets

Electric Vehicle Charging: Infrastructure and Global Markets

Report Scope:

This report analyzes the global and regional markets in electric vehicle charging and the global markets for wired infrastructure. Electric vehicles (EVs) include passenger vehicles, scooters and buses. State-of-the-art batteries have enabled a growing niche market for trucks, buses, small electric scooters and Segway-type vehicles. These electric vehicles require a charging infrastructure, which is expected to experience high growth in the future.

Market data in this report quantify opportunities for manufacturers of electric charging infrastructure. In addition to identifying various charging infrastructure types, charging services, installation types and charging types, it also covers the many issues concerning the merits of and prospects for the electric vehicle charging infrastructure business. These include corporate strategies, emerging technologies and the means for providing low-cost, high-technology products. The economic and technological issues regarded by many as critical to the industry’s current change state are also covered in detail.

The report has been prepared in a simple, easy-to-understand format; tables and figures are included to illustrate historical, current, and future market scenarios. The report also covers leading companies with information regarding charging infrastructure types, business footprint, revenue and employee strength. A list of other companies in the global market with their product-related information is also included.

The impact of COVID-19 and the Russia-Ukraine war are discussed regarding their impact on the global and regional markets. 2021 is considered a historical year; 2022 is considered the base year. Market values are forecast for five years from 2022 to 2027. All market values are in U.S. dollar ($) million amounts.

Report Includes:

38 total tables

An up-to-date overview of the global market scenario for electric vehicle (EV) charging infrastructure

Analyses of the global and regional market trends, with historic market revenue for 2021, estimates for 2022, and projections of compound annual growth rates (CAGRs) through 2027

Highlights of the current and upcoming market potential for the EV charging infrastructure, industry growth drivers, and areas of focus to forecast this market into various segments and sub-segments

Estimation of the actual market size and market forecast for electric vehicle charging infrastructure, and corresponding market share analysis based on EV type, charger type, installation/system, connector type, and geographic region

Updated information on key market drivers and opportunities, industry shifts and regulations, and other demographic factors that will influence this market demand in the coming years (2022-2027)

Insight into the major technology challenges, issues and risks, government regulations, recent developments, and COVID-19 impact on the global EV charging market

Patent review and new developments, R&D efforts, industrial changes with emphasis on recent investments, and current state of the market for electric vehicle charging infrastructure

Identification of the major stakeholders and analysis of the competitive landscape based on recent developments and segmental revenues

Descriptive company profiles of the leading global players, including Eaton, Fortum, ChargePoint Inc. and Leviton


Chapter 1 Introduction
1.1 Study Goals and Objectives
1.2 What’s New in This Update?
1.3 Reasons for Doing This Study
1.4 Scope of Report
1.5 Information Sources
1.6 Intended Audience
1.7 Methodology
1.8 Geographic Breakdown
1.9 Analyst's Credentials
1.10 BCC Custom Research
1.11 Related BCC Research Reports
Chapter 2 Summary and Highlights
Chapter 3 Market Overview
3.1 Current Market Overview
3.2 Technological Background and Advancements
3.2.1 EV Charging Technology History
3.2.2 Evolution of Electric Vehicles and Their Charging Infrastructure
3.2.3 Importance of Creating Charging Infrastructure
3.2.4 Standards and Codes of Electric Vehicle Charging Infrastructure
3.2.5 Charging Stands
3.3 Value Chain Analysis
3.4 Porter’s Five Forces Model
3.4.1 Supplier Power
3.4.2 Buyer Power
3.4.3 Threat of New Entrants
3.4.4 Threat of Substitute
3.4.5 Competitive Rivalry
3.5 Impact of COVID-19 and the Ukraine—Russia War on the Global Market
3.5.1 COVID-19 Impact
3.5.2 Impact of the Russia—Ukraine War
Chapter 4 Market Dynamics
4.1 Key Market Drivers
4.1.1 Increase in the Global Demand for Electric Vehicles
4.1.2 Tax Incentives and Regulatory Assistance for Plug-In Hybrid Electric Vehicles
4.1.3 Government Funding and Incentives Expected to Assist Electric Vehicle Charging Infrastructure
4.1.4 Lowering the Cost of EV Batteries on the Global Market to Increase EV and EVC Demand.
4.2 Market Restraints
4.2.1 High Capital Cost for Electric Vehicles Compared to the Conventional ICE Vehicles
4.2.2 Inadequate Electric Vehicle Charging Infrastructure
4.3 Key Challenges
4.3.1 Stringent Guidelines for Installation of EV Charging Stations
4.3.2 Limited Battery Capacity in Electric Vehicles
4.3.3 Lithium Less Readily Available for Use in Electric Vehicle Batteries
4.4 Market Opportunities
4.4.1 Strict Emission Regulations Creating a Market for Electric Vehicle Sales
4.4.2 Government Efforts Relating to Electric Vehicles
4.4.3 Government Support for Public Transportation Electrification
4.5 Future Trends
4.5.1 Autonomous Charging
4.5.2 Three-Dimensional EV Printing
4.5.3 V2G EV Charging Stations
4.5.4 Wireless and Inductive Charging
Chapter 5 Market Breakdown by Charging Type
5.1 Overview
5.2 AC Charger Level 1
5.3 AC Charger Level 2
5.4 DC Fast Charging
Chapter 6 Market Breakdown by Installation Type
6.1 Overview
6.2 Public Charging Outlets
6.3 Private Charging Outlets
Chapter 7 Market Breakdown by Charging Infrastructure Type
7.1 Overview
7.2 Type 2
7.3 GB/T
7.3.1 AC Charging
7.3.2 DC Fast Charging
7.4 CCS
7.5 CHAdeMO
7.6 Others
7.6.1 SAE J1772
7.6.2 Tesla Supercharger
Chapter 8 Market Breakdown by Charging Service
8.1 Overview
8.2 EV Charging Service
8.2.1 Benefits
8.2.2 Charging as a Service
8.2.3 Responsibilities of EV CaaS Provider
8.3 Battery Swapping Service
8.3.1 Battery Swapping Types
Chapter 9 Market Breakdown by Region
9.1 Overview
9.2 North America
9.2.1 U.S.
9.2.1 Canada
9.2.1 Mexico
9.3 Europe
9.3.1 The Netherlands
9.3.2 France
9.3.3 Germany
9.3.4 U.K.
9.3.5 Italy
9.3.6 Rest of Europe
9.4 Asia-Pacific
9.4.1 China
9.4.2 Japan
9.4.3 South Korea
9.4.4 India
9.4.5 Rest of Asia-Pacific
9.5 Rest of the World
9.5.1 South America
9.5.2 Middle East and Africa
Chapter 10 Patent Analysis
10.1 Patent Analysis
Chapter 11 Competitive Landscape
11.1 Overview
11.2 Key Market Developments
11.3 Ongoing Innovations in EV Charging
11.4 Wireless Electric Vehicle Charging
11.4.1 Charging of Mobile Devices
11.4.2 Lightning-Fast Charging
11.4.3 Advancements in Battery Technology
11.5 Innovations in Battery Technologies
11.5.1 Lithium-Ion Batteries
11.5.2 Batteries with Solid-State Technology
11.5.3 Aluminum-Ion Rechargeable Batteries
11.5.4 Batteries Made of Lithium-Sulfur
11.5.5 Batteries Made of Metal and Air
Chapter 12 Company Profiles
12.1 Introduction
ABB GROUP
BEAM GLOBAL
BLINK CHARGING CO.
BP PULSE
CHARGEPOINT INC.
CLIPPERCREEK INC. (SUBSIDIARY OF ENPHASE ENERGY)
EATON
ELECTRIFY AMERICA LLC
ENGIE S.A.
FORTUM
LEVITON
ROBERT BOSCH GMBH
SCHNEIDER ELECTRIC SE
SEMACONNECT
SHELL PLC
SIEMENS AG
TESLA MOTORS
WEBASTO GROUP

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