Distributed Energy Generation (DEG) Market Analysis, Market Size, Share, Regional Outlook, Industry Trends, Competitive Strategies And Segment Forecast, 2012 To 2020

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Distributed Energy Generation (DEG) Market Analysis,
Market Size, Share, Regional Outlook, Industry Trends,
Competitive Strategies And Segment Forecast, 2012 To 2020
Industry Insights
Increasing environmental awareness about energy generation using conventional plants is going to
make governments to increase development of DEG technology. It is the factor expected to drive the
market growth over the forecast period. Distributed energy generation system includes small-scale
energy generation units which generate energy at a location near to power end-users. Distributed
energy generation cuts the need of building a transmission capacity which reduces the line cost.
The implementation of distributed energy generation technology benefits in increased power reliability,
reduction in cost of electricity and many other end user application benefits. These benefits are
expected to grow the market of distributed energy generation globally. Furthermore, increasing
electricity usage with environment friendly attributes is expected to drive the market of distributed
energy generation technology in coming years.
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Key drivers such as awareness related to energy including greenhouse gas emission, air and water
pollution, energy generation cost, other economic & environmental concerns, climate change and
increased occurrence of power blackouts are the key factors driving the growth of distributed energy
generation market. However, high implementation cost of the technology may restraint the market over
the forecast period. Increased adoption of distributed energy offers major opportunities in coming
years. DGE is one of the optimum solutions that can be implemented globally to satisfy increasing
interest in production of substitute energy source worldwide which is expected to impact the market
growth positively.
Technology Insights
Combined heat and power (CHP) generates electricity or mechanical power with lower emissions
compared with conventional systems. Combined heat and power (CHP) systems produce electricity and
useful thermal energy in a single, integrated system. Heat wasted in conventional power production, is
recovered as useful energy making CHP more efficient and beneficial for environment, economy and
energy system infrastructures. CHP offers profitability to users and it is environment friendly. Fuel cells
transform chemical energy in to electricity by chemical process with oxidizing agent. Fuel cells are useful
in portable power generation such as laptops, camera among others which is going to drive the market
growth.
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Distributed solar PV systems offer the advantage of producing electricity onsite, reducing the
requirement to build new transmission capacity and avoiding line losses. Solar PV based distribution
energy generation is used in applications varying from residential, small commercial to industrial use.
Solar PV will continue its steady growth in major markets over the next few years. Turbines are used to
produce both heat and electricity in small scale. Turbines offer lightweight, compact size, low emission,
small number of moving parts and low operational cost. Due to these characteristics, wind turbines are
expected to grow the market for distributed energy generation technology. In automobiles,
reciprocating engines transform pressure into rotating motion, which is expected to drive the growth for
turbine based DEG system.
End-Use Insights
Major end users of DEG system are in buildings, residential, institutional, commercial & industrial
markets. Industrial and commercial industries dominate the segment due to available resources such as
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industrial waste and heat energy for reuse. These segments are also expected to increase the market
growth over the forecast period.
Application Insights
Major applications of DEG systems are on grid and off grid systems. On grid system is a dependent
installation which is connected directly to the onsite area while off grid system is independent
installation connected directly to the onsite area which needs battery to store the energy generated
from process. Comparing on grid and off grid systems, on grid system is costlier but more effective due
to the continuous provision of energy from its stored, generated energy. Hence, depending on its end
use, on grid and off grid systems are expected to impact the growth of the market in coming years.
Regional Insights
Asia pacific, Middle East, Africa, Europe and Americas are the major regions expected to witness the
DEG market growth in near future. Adoption of stringent regulations in Europe is going to expel the
market growth in coming years. Asia Pacific is also expected to witness the growth due to the presence
of major players in the region and growing demand of energy from increasing population. Cheaper
production cost owing to cheaper manpower is one of the reasons for players to invest more in Asia
pacific countries in coming years.
Competitive Insights
First Solar Inc., Ballard Power Systems Inc., FuelCell Energy Inc., General Electric Energy LLC, JA Solar
Holdings Co. Ltd., Ingersoll-Rand plc, Sharp Corp., Suntech Power Holdings Co. Ltd., Siemens AG, Yingli
Green Energy Holding Co. Ltd. and UTC Power LLC are the key players in distributive energy generation
market marching towards the growth of the market.
Table of Contents
Chapter 1 Executive Summary
1.1 Distributed Energy Generation - Industry Summary Critical Success Factors (CSFs)
Chapter 2 Distributed Energy Generation Industry Outlook
2.1 Market Segmentation
2.2 Market Size and Growth Prospects
2.3 Distributed Energy Generation Value Chain Analysis
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2.4 Distributed Energy Generation Market Dynamics
2.5 Key Opportunities Prioritized
2.6 Industry Analysis - Porter's
2.7 Distributed Energy Generation- PESTEL Analysis
Chapter 3 Distributed Energy Generation Technology Outlook
3.1 Combined heat and power (CHP)
3.2 Fuel cell
3.3 Micro turbines
3.4 Reciprocating engines
3.5 Solar Photovoltaic (PV) systems
3.6 Wind turbines
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Chapter 4 Distributed Energy Generation End-use Outlook
4.1 Residential
4.2 Building & Institution
4.3 Commercial and Industrial
Chapter 5 Distributed Energy Generation Application Outlook
5.1 On grid
5.2 Off grid
Chapter 6 Distributed Energy Generation Regional Outlook
6.1 North America
6.2 Europe
6.3 Asia Pacific
6.4 MEA
6.5 RoW (Mexico, Latin America, Brazil)
Chapter 7 Distributed Energy Generation (DEG) Competitive Landscape
7.1 First Solar Inc.
7.2 Ballard Power Systems Inc.
7.3 Canyon Hydro
7.4 ClearEdge Power
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7.5 Enercon
7.6 Fuel Cell Energy Inc
7.7 Gamesa Corp
7.8 General Electric Energy LLC
7.9 Gilbert Gikes & Gordon Ltd
7.10 JA Solar Holding Co.
Chapter 8 Methodology Scope
8.1 Research Methodology
8.2 Research Scope Assumptions
8.3 List of Data Sources
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Distributed energy generation system includes small-scale energy generation units which generate energy at a location near to power end-users. Distributed energy generation cuts the need of building a transmission capacity which reduces the line cost.