Energy Harvesters markets at $131.4 million in 2012 are projected to increase to $4.2 billion in 2019. Growth is anticipated to be based on demand for micro power generation that can be used to charge thin film batteries. Systems provide clean energy that is good for the environment. Growth is based on global demand for sensors and wireless sensor networks that permit control of systems.
Worldwide markets are poised to achieve significant growth as the Energy Harvesting is used inside telemedicine systems and m-health initiatives as a way to implement ruggedized handset communications for all clinicians.
Advanced storage devices are emerging simultaneously. Storage devices can leverage the power captured by energy harvesting devices. Energy storage technologies of super-capacitors and thin-film batteries have become cost-effective. Energy harvesting devices have attained workable levels of efficiency. There are significant cost reductions. Many applications are related to smarter computing that depends on sensors capturing change in conditions and making adjustments to the environment based on measured change.
Existing energy harvesting and storage applications include vibration-based wireless train measuring systems, wireless sensors distributed city wide to implement smart cities, oil field monitoring systems, windup laptops for use in remote regions, and wireless light switches for use in smart buildings. Wireless sensors are self-powering. They can be used to alert and monitor a range of environments and incidents, pollution and forest fires, robberies in a city, temperature in a building, and movement around a border fence. Energy harvesting technologies include electrodynamics, photovoltaics, piezoelectrics, and thermovoltaics. Photovoltaic systems for solar energy are evolving at a slower pace. The energy harvesting and energy storage market factors implement light harvesting for small devices Technological developments in the fields of low-power electronics and energy storage systems have allowed energy harvesting to become an increasingly viable technology. It is alternatively referred to as energy scavenging and power harvesting. Energy harvesting technology has become sophisticated and efficient.
According to Susan Eustis, the lead author of the team that created the study, "Converting ambient energy to useable electrical energy harvesting (EH) systems is a useful and compelling technology. The technologies offer an inexpensive and compact way to power portable electrical devices initially and to create stores of power in the long term."
Electronics tends to rely heavily on batteries. EH technology powers an increasing number of consumer and industrial products that are untethered or need to become disconnected from electrical outlets. As initial projects succeed and prove their worth, the technology is set to proliferate.
At some point energy harvester markets will shift from simple growth to rapid growth measured as a penetration analysis. This will happen as markets move beyond the early adopter stage. Eventually energy harvesters will be used as fuel to power batteries for electronic devices and smart phones. The energy is manufactured from vibration and thermal differentiation that is ambient in the environment. Energy harvesters have become more feasible as the technology evolves.
Ambient Energy Harvesters Market to 2016 - Replacement of Batteries for Low Power Applications Creates Growth Opportunities: Ambient Energy Harvesters Market to 2016 Replacement of Batteries for Low Power Applications Creates Growth Opportunities, provides key information and analysis of market opportunities in the ambient energy harvesters (AEHs) market. The report provides information on industry dynamics, key suppliers, and the sales revenue and sales volume of AEHs. The report also provides forecasts for energy harvesting based on type, region and end-application until 2016. Market size forecasts until 2016 are provided for photovoltaic energy harvesters, electromagnetic energy harvesters, piezoelectric energy harvesters and thermoelectric energy harvesters. The following application markets for energy harvesters are also discussed: consumer electronics, industrial and building automation, and military and aerospace. To Browse Full TOC, Tables & Figures visit: http://www.researchmoz.us/ambient-energy-harvesters-market-to-2016-replacement-of-batteries-for-low-power-applications-creates-growth-opportunities-report.html
Global and China Single-Phase Energy Meter Industry 2013 Market Research Report: The report firstly introduced Single-phase Energy Meter basic information included Single-phase Energy Meter definition classification application industry chain structure industry overview; international market analysis, China domestic market analysis, Macroeconomic environment and economic situation analysis, Single-phase Energy Meter industry policy and plan, Single-phase Energy Meter product specification, manufacturing process, cost structure etc. then statistics Global and China key manufacturers Single-phase Energy Meter capacity production cost price profit production value gross margin etc information, and Global and China Single-phase Energy Meter capacity production market share supply demand shortage import export consumption etc data statistics, and Single-phase Energy Meter 2009-2014 capacity production price cost profit production value gross margin etc information. To Browse Full TOC, Tables & Figures visit: http://www.researchmoz.us/global-and-china-single-phase-energy-meter-industry-2013-market-research-report-report.html
Global and China Smart Energy Meter Industry 2013 Market Research Report : The report firstly introduced Smart energy meter basic information included Smart energy meter definition classification application industry chain structure industry overview; international market analysis, China domestic market analysis, Macroeconomic environment and economic situation analysis, Smart energy meter industry policy and plan, Smart energy meter product specification, manufacturing process, cost structure etc. then statistics Global and China key manufacturers Smart energy meter capacity production cost price profit production value gross margin etc information, and Global and China Smart energy meter capacity production market share supply demand shortage import export consumption etc data statistics, and Smart energy meter 2009-2014 capacity production price cost profit production value gross margin etc information. To Browse Full TOC, Tables & Figures visit: http://www.researchmoz.us/global-and-china-smart-energy-meter-industry-2013-market-research-report-report.html
Global Next Generation High Speed Wireless Networking Market 2012-2016: Analysts forecast the Global Next-generation High-speed Wireless Networking market to grow at a CAGR of 7.94 percent over the period 2012-2016. One of the key factors contributing to this market growth is the increased adoption of HSPA technology. The Global Next-generation High-speed Wireless Networking market has also been witnessing an increase in the deployment of LTE networks. However, the selection of the right technology for network up gradation could pose a challenge to the growth of this market. Global Next-generation High-speed Wireless Networking Market 2012-2016, has been prepared based on an in-depth market analysis with inputs from industry experts. The report covers the Americas, and the EMEA and APAC regions; it covers the Global Next-generation High-speed Wireless Networking market landscape and its growth prospects in the coming years. The report also includes a discussion of the key vendors operating in this market. To Browse Full TOC, Tables & Figures visit: http://www.researchmoz.us/global-next-generation-high-speed-wireless-networking-market-2012-2016-report.html
Software-defined Networking (SDN): Market Opportunities and Challenges: An approach to building computer networks that separates and abstracts elements of these systems, Software Defined Networking (SDN) allows system administrators to rapidly provision network connections in mechanized fashion rather than manually configuring. In software architecture terms, SDN requires some method for the Control Plane to communicate with the Data Plane. One such mechanism is OpenFlow which is a standard interface for controlling computer networking switches.This report evaluates SDN, OpenFlow, and other related tools, procedures and mechanisms. It includes analysis of SDN versus other approaches, the impacts on existing vendors, and the future market potential for various approaches. To Browse Full TOC, Tables & Figures visit: http://www.researchmoz.us/software-defined-networking-sdn-market-opportunities-and-challenges-report.html
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