“The
Report Energy Harvesting/ Regeneration for Electric Vehicles Land,
Water & Air 2015-2025 provides information on pricing, market
analysis, shares, forecast, and company profiles for key industry
participants. - MarketResearchReports.biz”
The electric vehicle industry
- land, water and air - is rapidly rising to become a huge market of
over $533 billion by 2025. Some run entirely on harvested energy as
with solar lake boats. Others recycle energy as with regenerative
braking of cars, buses and military vehicles harvesting kinetic
energy. Others use different forms of harvesting either to charge the
traction batteries or to drive autonomous devices as we progress to
the wireless vehicle.
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In some cases, harvesting is
making completely new forms of electric vehicle possible such as
"glider" Autonomous Underwater Vehicles (AUVs) that stay at
sea for years and surface to gain electricity from both wave power
and sunshine whenever necessary. Indeed, multiple forms of energy
harvesting on one vehicle is becoming much more common from cars to
superyachts. This report is the first to provide technical and
marketing analysis of the rapidly growing market for energy
harvesting in electric vehicles - land, water and air - with
forecasts.
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Complete TOC at
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This report gives a wealth of
examples of energy harvesting in action on electric vehicles by land,
water and air. It summarises trends in diagrams, tables and text to
make it easy to compare essential information. Forecasts for adoption
in 2015 and 2025 are backed by ten year forecasts for electric
vehicle sales by type, 2014-2024 by category - number, unit value and
market value. A critical explanation of all the technologies is given
with the good and bad aspects and assessment of likely future
progress. The work of a large number of suppliers and adopters is
assessed.
Table
of Contents
1. EXECUTIVE SUMMARY AND
CONCLUSIONS
1.1. What is energy
harvesting?
1.2. Choices of harvesting
1.3. Opportunities for energy
harvesting in cars
1.4. Market size of EV energy
harvesting 2014-2025
1.5. Largest sectors
1.6. Regenerative braking
1.7. Large UK Government
grants for KERS harvesting
1.8. Energy harvesting for
racing cars shows the way
2. INTRODUCTION
2.1. Energy harvesting
2.1.1. Textron Bell helicopter
sensing
2.1.2. Train brakes
2.1.3. MEMS
2.2. Electric vehicle
2.3. Needs
2.3.1. Range and cost
2.3.2. Hybrid vs pure electric
2.3.3. Biomimetics
2.4. Options and examples
2.4.1. ETH, QinetiQ solar
plane
2.4.2. Amerigon
thermoelectrics for cars, etc
2.4.3. Military land vehicles
2.4.4. NASA on Mars- planetary
exploration vehicles
2.5. Bluecar
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According to an estimated average car scrappage deadline of 10-15
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