About Vehicle Grid Integration Technologies Widespread electrification of the transportation sector has allowed the production of millions of EVs. These EVs have high potential to reduce greenhouse gas (GHG) emissions and other air pollutants. The process of integrating EVs with the grid to provide ancillary services to the grid is called V2G integration. A V2G system facilitates the flow of power between a power grid and electric drive vehicles such as battery electric vehicle (BEV), plug-in hybrid electric vehicle (PHEV), or fuel cell electric vehicle. These V2G systems also provide a network that helps the owner communicate with the power grid. In addition, the V2G technology provides demand response services to the power grid, enhancing the efficiency of the system while operating heavy loads. Integrating vehicles into the grid requires technologies such as bidirectional chargers and communication and control systems, which enable a two-way flow of power between the vehicle and the grid. Technavios analysts forecast the global vehicle grid integration technologies market to grow at a CAGR of 33.7% during the period 2016-2020. Covered... Research Beam Model: Research Beam Product ID: 444403 2500 USD New
Global Vehicle Grid Integration Technologies Market 2016-2020
 
 

Global Vehicle Grid Integration Technologies Market 2016-2020

  • Category : Energy and Power
  • Published On :   0
  • Pages : 55
  • Publisher : Technavio
 
 
 
About Vehicle Grid Integration Technologies

Widespread electrification of the transportation sector has allowed the production of millions of EVs. These EVs have high potential to reduce greenhouse gas (GHG) emissions and other air pollutants. The process of integrating EVs with the grid to provide ancillary services to the grid is called V2G integration.
A V2G system facilitates the flow of power between a power grid and electric drive vehicles such as battery electric vehicle (BEV), plug-in hybrid electric vehicle (PHEV), or fuel cell electric vehicle. These V2G systems also provide a network that helps the owner communicate with the power grid. In addition, the V2G technology provides demand response services to the power grid, enhancing the efficiency of the system while operating heavy loads.
Integrating vehicles into the grid requires technologies such as bidirectional chargers and communication and control systems, which enable a two-way flow of power between the vehicle and the grid.

Technavios analysts forecast the global vehicle grid integration technologies market to grow at a CAGR of 33.7% during the period 2016-2020.

Covered in this report
The report covers the present scenario and the growth prospects of the global vehicle grid integration technologies market for 2016-2020. The report also presents the vendor landscape and a corresponding detailed analysis of the top four vendors operating in the market.

The market is divided into the following segments based on geography:
• Americas
• APAC
• EMEA

Technavio's report, Global Vehicle Grid Integration Technologies Market 2016-2020, has been prepared based on an in-depth market analysis with inputs from industry experts. The report covers the market landscape and its growth prospects over the coming years. The report also includes a discussion of the key vendors operating in this market.

Key vendors
• AC Propulsion Inc.
• Coritech Services Inc
• Denso Corporation
• Hitachi Ltd.

Other prominent vendors
• Autoport
• BMW
• Daimler
• Honda
• Kisensum

Market driver
• Ability to meet peak electricity demand
• For a full, detailed list, view our report

Market challenge
• Costs associated with V2G infrastructure
• For a full, detailed list, view our report

Market trend
• Popularity of EVs and increase in government initiatives
• For a full, detailed list, view our report

Key questions answered in this report
• What will the market size be in 2020 and what will the growth rate be?
• What are the key market trends?
• What is driving this market?
• What are the challenges to market growth?
• Who are the key vendors in this market space?
• What are the market opportunities and threats faced by the key vendors?
• What are the strengths and weaknesses of the key vendors?

You can request one free hour of our analysts time when you purchase this market report. Details are provided within the report.
PART 01: Executive summary
Highlights
PART 02: Scope of the report
Market overview
Top-vendor offerings
PART 03: Market research methodology
Research methodology
Economic indicators
PART 04: Introduction
Key market highlights
PART 05: Market landscape
Market overview
Technology overview
Market size and forecast
Five forces analysis
PART 06: Market segmentation by technology
Global vehicle grid integration technologies market by technology 2015
Global vehicle grid integration technologies market by technology 2020
Global vehicle grid integration technologies market by technology 2020
Global vehicle grid integration technologies market by drive system technology
Global vehicle grid integration technologies market by software and communication technology
Global vehicle grid integration technologies market by equipment
PART 07: Geographical segmentation
Global vehicle grid integration technologies market by geography 2015
Global vehicle grid integration technologies market by geography 2020
Global vehicle grid integration technologies market by geography 2015-2020
Vehicle grid integration technologies market in Americas
Vehicle grid integration technologies market in APAC
Vehicle grid integration technologies market in EMEA
PART 08: Key leading countries
US
China
Japan
PART 09: Market drivers
PART 10: Market challenges
PART 11: Impact of drivers and challenges
PART 12: Market trends
PART 13: Vendor landscape
Other prominent vendors
PART 14: Key vendor analysis
AC Propulsion
Coritech
DENSO
Hitachi
PART 15: Appendix
List of abbreviations
PART 16: Explore Technavio

Exhibit 01: Product offerings
Exhibit 02: Benefits of V2G
Exhibit 03: Market overview
Exhibit 04: V2G system flow chart
Exhibit 05: Three basic requirements of V2G technology
Exhibit 06: Global vehicle grid integration market 2016-2020 ($ billions)
Exhibit 07: Estimated percentage of time spent by EV by location and activity
Exhibit 08: Various functions of vehicle-grid integration
Exhibit 09: Examples of V2G pilot projects
Exhibit 10: Five forces analysis
Exhibit 11: Global vehicle grid integration technologies market by technology 2015
Exhibit 12: Forecast of global vehicle grid integration technologies market by technology 2020
Exhibit 13: Global vehicle grid integration technologies market by technology 2020
Exhibit 14: Global vehicle grid integration technologies market by drive system technology 2015-2020 ($ billions)
Exhibit 15: Global vehicle grid integration technologies market by software and communication technology 2015-2020 ($ billions)
Exhibit 16: Typical V2G communication path
Exhibit 17: Global vehicle grid integration technologies market by equipment 2015-2020 ($ billions)
Exhibit 18: Global vehicle grid integration technologies market by geography 2015
Exhibit 19: Global vehicle grid integration technologies market by geography 2020
Exhibit 20: Global vehicle grid integration technologies market by geography 2015-2020
Exhibit 21: Vehicle grid integration technologies market in Americas 2015-2020 ($ billions)
Exhibit 22: Vehicle grid integration technologies market in APAC 2015-2020 ($ billions)
Exhibit 23: Vehicle grid integration technologies market in EMEA 2015-2020 ($ billions)
Exhibit 24: Global EV sales 2011-2014 ($ thousands)
Exhibit 25: EV spending by EVs initiative (EVI) countries 2008-2014 ($ billions)
Exhibit 26: PHEV battery progress 2011-2013
Exhibit 27: Impact of drivers
Exhibit 28: Impact of drivers and challenges
Exhibit 29: Government initiatives to increase purchase of EVs
Exhibit 30: Other prominent vendors
Exhibit 31: AC propulsion: Product and services overview
Exhibit 32: Vehicle-to-grid product portfolio
Exhibit 33: Coritech: Product overview
Exhibit 34: V2G product portfolio
Exhibit 35: Vehicle-to-grid product portfolio

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