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Europe Virtual Power Plant Market Forecast 2018-2026

Europe Virtual Power Plant Market Forecast 2018-2026

KEY FINDINGS
Rising renewable energy generation as compared to conventional energy has significantly bolstered the market for virtual power plants. The European virtual power plant market is all set to exhibit a CAGR of 25.96% for the estimated period of 2018-2026.

MARKET INSIGHTS
Prominent virtual power plant markets in Europe are Germany, UK, Spain, France etc. Significant adoption of demand response technology for preventing the energy wastage is expected to drive substantial growth across the United Kingdom virtual power plant market. France has introduced a research project which focuses on integrating the energy storage solutions across France’s “virtual power lines”. German market accounted for the lion’s share of the European virtual power plant market in 2017 and is expected to maintain this lead throughout the projected years. Several energy infrastructure projects in Germany have received significant funding from the Federal Network Agency of Germany for installing the power lines to connect the wind power that is generated in North Germany with the electricity consumption centres across the South Germany.

COMPETITIVE INSIGHTS
Companies like Cisco Systems Inc, Robert Bosch, Power Analytics Corporation (Causam Energy), Autogrid Systems Inc, Siemens, Schneider Electric, General Electric, IBM Corporation, Abb Ltd, Open Access Technology International Inc, Enbala and others are engaged in this market.


1. Research Scope
1.1. Study Goals
1.2. Scope Of The Market Study
1.3. Who Will Find This Report Useful?
1.4. Study And Forecasting Years
2. Research Methodology
2.1. Sources Of Data
2.1.1. Secondary Data
2.1.2. Primary Data
2.2. Top Down Approach
2.3. Bottom-up Approach
2.4. Data Triangulation
3. Executive Summary
3.1. Market Summary
3.2. Key Findings
3.2.1. Demand Response To Lead The Technology Segment
3.2.2. Commercial And Industrial Sector To Dominate The End-user Segment
3.2.3. Rising Renewable Energy Generation To Drive The Market
4. Market Dynamics
4.1. Market Definition
4.2. Drivers
4.2.1. Rapid Shift To Distributed Generation From Centralized Generation
4.2.2. Rising Renewable Energy Generation As Compared To Conventional Energy
4.2.3. Reducing Solar Energy Generation Cost
4.2.4. Rising Demand For Cloud-based Energy Management System
4.3. Restraints
4.3.1. High Capital Cost Required For Software And Control Systems
4.3.2. Adverse Health Effect Due To Radio Frequency Exposure
4.4. Opportunities
4.4.1. Increasing Renewable Energy Development In Emerging Countries
4.4.2. Increasing Development Of Smart Grids
4.4.3. Rising Demand For Electric Vehicles
4.5. Challenges
4.5.1. Security And Privacy Concerns
4.5.2. Lack Of Skilled Professionals
5. Market By End-users
5.1. Commercial & Industrial
5.2. Residential
6. Market By Technology
6.1. Demand Response
6.2. Distribution Generation
6.3. Mixed Assets
7. Key Analytics
7.1. Porters 5 Force Model
7.1.1. Threat Of New Entrants
7.1.2. Threat Of Substitute Products
7.1.3. Bargaining Power Of Buyers
7.1.4. Bargaining Power Of Suppliers
7.1.5. Intensity Of Competitive Rivalry
7.2. Key Buying Criteria
7.2.1. Technology
7.2.2. Scalability
7.2.3. Price
7.2.4. Feasibility
7.3. Value Chain Analysis
7.3.1. Power Producers
7.3.2. Virtual Power Plant
7.3.3. Directed Energy Operators (Dsos)
7.3.4. End-users
7.4. Regulatory Framework
7.5. Key Trends
7.5.1. Rise In Electricity Demand
7.5.2. Investments In Virtual Power Plants
7.6. Investment Outlook
7.6.1. Country Outlook
7.6.2. Opportunities In Emerging Technologies
8. Geographical Analysis
8.1. United Kingdom
8.2. France
8.3. Germany
8.4. Spain
8.5. Rest Of Europe
9. Competitive Landscape
9.1. Market Share Analysis
9.1.1. Abb
9.1.2. Autogrid Systems Inc.
9.1.3. Enbala Technology
9.1.4. Siemens Ag
9.1.5. Viridity Energy (Acquired By Ormat Technologies)
9.2. Top Winning Strategies
9.3. Company Profiles
9.3.1. Abb
9.3.1.1. Overview
9.3.1.2. Product Portfolio
9.3.1.3. Strategic Initiatives
9.3.1.4. Scot Analysis
9.3.1.5. Strategic Analysis
9.3.2. Autogrid Systems, Inc.
9.3.2.1. Overview
9.3.2.2. Product Portfolio
9.3.2.3. Strategic Initiative
9.3.2.4. Scot Analysis
9.3.2.5. Strategic Analysis
9.3.3. Blue Pillar
9.3.3.1. Overview
9.3.3.2. Product Portfolio
9.3.3.3. Strategic Initiatives
9.3.3.4. Scot Analysis
9.3.3.5. Strategic Analysis
9.3.4. Cisco Systems, Inc.
9.3.4.1. Overview
9.3.4.2. Product Portfolio
9.3.4.3. Scot Analysis
9.3.4.4. Strategic Analysis
9.3.5. Enernoc (Acquired By Enel Green Power North America, Inc.)
9.3.5.1. Overview
9.3.5.2. Product Portfolio
9.3.5.3. Strategic Initiative
9.3.5.4. Scot Analysis
9.3.5.5. Strategic Analysis
9.3.6. General Electric
9.3.6.1. Overview
9.3.6.2. Product Portfolio
9.3.6.3. Strategic Initiatives
9.3.6.4. Scot Analysis
9.3.6.5. Strategic Analysis
9.3.7. Hitachi Ltd
9.3.7.1. Overview
9.3.7.2. Product Portfolio
9.3.7.3. Strategic Initiatives
9.3.7.4. Scot Analysis
9.3.7.5. Strategic Analysis
9.3.8. Flexitricity Limited (Acquired By Alpiq)
9.3.8.1. Overview
9.3.8.2. Product Portfolio
9.3.8.3. Scot Analysis
9.3.8.4. Strategic Analysis
9.3.9. Ibm Corporation
9.3.9.1. Overview
9.3.9.2. Product Portfolio
9.3.9.3. Scot Analysis
9.3.9.4. Strategic Analysis
9.3.10. Open Access Technology International Inc.
9.3.10.1. Overview
9.3.10.2. Product Portfolio
9.3.10.3. Strategic Analysis
9.3.10.4. Scot Analysis
9.3.10.5. Strategic Analysis
9.3.11. Power Analytics Corporation (Causam Energy)
9.3.11.1. Overview
9.3.11.2. Product Portfolio
9.3.11.3. Strategic Initiatives
9.3.11.4. Scot Analysis
9.3.11.5. Strategic Analysis
9.3.12. Robert Bosch
9.3.12.1. Overview
9.3.12.2. Product Portfolio
9.3.12.3. Scot Analysis
9.3.12.4. Strategic Analysis
9.3.13. Schneider Electric
9.3.13.1. Overview
9.3.13.2. Product Portfolio
9.3.13.3. Strategic Initiatives
9.3.13.4. Scot Analysis
9.3.13.5. Strategic Analysis
9.3.14. Siemens
9.3.14.1. Overview
9.3.14.2. Product Portfolio
9.3.14.3. Strategic Initiatives
9.3.14.4. Scot Analysis
9.3.14.5. Strategic Analysis
9.3.15. Viridity Energy (Acquired By Ormat Technologies)
9.3.15.1. Overview
9.3.15.2. Product Portfolio
9.3.15.3. Strategic Initiatives
9.3.15.4. Scot Analysis
9.3.15.5. Strategic Analysis
9.3.16. Enbala
9.3.16.1. Overview
9.3.16.2. Product Portfolio
9.3.16.3. Strategic Initiatives
9.3.16.4. Scot Analysis
9.3.16.5. Strategic Analysis
List Of Tables
Table 1 Europe Virtual Power Plant Market By Country 2018-2026 ($ Million)
Table 2 Cost Reduction Potential For Solar And Wind Power (2015-2025)
Table 3 Smart Grid Investments In Europe
Table 4 Europe Virtual Power Plant Market By End-user 2018-2026 ($ Million)
Table 5 Europe Virtual Power Plant Market By Technology 2018-2026 ($ Million)
Table 6 Investments In Virtual Power Plants
Table 7 Europe Virtual Power Plant Market By Country 2018-2026 ($ Million)
List Of Figures
Figure 1 Europe Virtual Power Plant Market By Technology 2018-2026 ($ Million)
Figure 2 Europe Demand Response Virtual Power Plant Market 2018-2026 ($ Million)
Figure 3 Europe Commercial And Industrial Market 2018-2026 ($ Million)
Figure 4 Europe Commercial & Industrial Market 2018-2026 ($ Million)
Figure 5 Europe Residential Market 2018-2026 ($ Million)
Figure 6 Europe Demand Response Market 2018-2026 ($ Million)
Figure 7 Europe Distribution Generation Market 2018-2026 ($ Million)
Figure 8 Europe Mixed Assets Market 2018-2026 ($ Million)
Figure 9 Electricity Demand Projection Till 2040
Figure 10 Investment Proposition For Europe Virtual Power Plant Market By Country – 2017
Figure 11 Investment Proposition For Europe Virtual Power Plant Market By Technologies – 2017
Figure 12 United Kingdom Virtual Power Plant Market 2018-2026 ($ Million)
Figure 13 France Virtual Power Plant Market 2018-2026 ($ Million)
Figure 14 Germany Virtual Power Plant Market 2018-2026 ($ Million)
Figure 15 Spain Virtual Power Plant Market 2018-2026 ($ Million)
Figure 16 Rest Of Europe Virtual Power Plant Market 2018-2026 ($ Million)
Figure 17 Market Share Analysis Of Europe Virtual Power Plant Market – 2017 (%)

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