The 7th International Conference on Sustainable Energy Information Technology (SEIT-2017) aims to bring together academia, industry, research scholars, business entrepreneurs, practitioners, managers, and policy makers responsible in delivering advanced sustainable energy solutions for competitive advantage and cost savings in modern industrial and business sectors. The conference will act as a platform for the dissemination of current technologies in intelligent sustainable energy, as well as act as a forum for the strategic next steps in smart grid adaptation. SEIT 2017 will be held in conjunction with the 8th International Conference on Ambient Systems, Networks and Technologies (ANT-2017).
SEIT 2017 will be held in Madeira, a Portuguese archipelago. Madeira is a popular year-round tourist destination, known for its remarkable mountainous scenery and mild year-long climate. Although, Madeira is part of Europe it is approximately 1,000 km from the continent while being only 520 km from the coast of Africa. It is about an hour and a half flight from the capital of Portugal, Lisbon. Funchal, the picturesque capital of Madeira, is situated on the south coast of the island and one of Atlantic Oceans most popular cruise ship ports. Madeira is a scenic island with many unique destinations such as the Laurisilva forest, a UNESCO World Heritage site.
Visitors can also choose from a variety of activities such as boat trips, whale watching, hiking and walking along the mountain trails.
All SEIT 2017 accepted papers will be published by Elsevier Science in the open-access Procedia Computer Science series on-line. Procedia Computer Science is hosted by Elsevier on www.Elsevier.com and on Elsevier content platform ScienceDirect (www.sciencedirect.com), and will be freely available worldwide. All papers in Procedia will be indexed by Scopus (www.scopus.com) and by Thomson Reuters' Conference Proceeding Citation Index (http://thomsonreuters.com/conference-proceedings-citation-index/). All papers in Procedia will also be indexed by Scopus (www.scopus.com) and Engineering Village (Ei) (www.engineeringvillage.com). This includes EI Compendex (www.ei.org/compendex). Moreover, all accepted papers will be indexed in DBLP (http://dblp.uni-trier.de/). The papers will contain linked references, XML versions and citable DOI numbers. You will be able to provide a hyperlink to all delegates and direct your conference website visitors to your proceedings.
Advanced Techniques for Energy Applications
Advanced Control algorithms for applications
Big data, Machine Learning and other Expert Systems applications
IT for energy applications
Optimization techniques for energy applications
Energy Efficiency
Advanced Control algorithms for applications
Eco Systems
Economic water (re)use
Efficient circuit design for energy harvesting
Efficient energy production methods
Efficient use of energy in the oil and gas industries
Efficient data centers
Energy & sustainability
Energy efficient power and cooling infrastructure
Energy recycling
Energy saving products
Energy harvesting, storage, and recycling
Interdisciplinary empirical, analytical and optimization research in applied ergonomics and sustainability
Power-efficient delivery and cooling
Productivity and energy efficiency
Sustainable energy system operational strategies
Energy Policy
Deregulation and Electric Power Market
Energy policy
Market Modeling and Design
Regulatory Issues and Standards
Security of Supply
Environmental
Carbon emission methods
Carbon footprints
Carbon metering and user feedback
Climate and ecosystem monitoring
Climate change
Climate globalization
Environment and social policies
Environmental issues arising from sustainable energy technologies
Environmental management systems
Environmental pollution and work hazards
Ergonomics and benchmarking
Using IT to reduce carbon emissions
Green Sustainability
Analytical research in applied ergonomics and green sustainability
Combinatorial research in applied ergonomics and green sustainability
Empirical research in applied ergonomics and green sustainability
Experimental research in applied ergonomics and green sustainability
Exploratory research in applied ergonomics and Green Sustainability
Green business practices
Green process for competitive Advantage Survey and Review Research in Applied Ergonomics and Green Sustainability
Green Strategy and Synchronized Transformation
Green Technology
Power Quality, Power Electronics and Electric Machines
Conventional Power plants
Electric Machines design, modeling, simulation, analysis and testing
Electric Drives
Electromagnetic Compatibility (EMC)
Power Quality and Filtering Techniques
Power Electronics devices (FACTS, STATCOMS, etc.)
UPS
Power Systems
Electric Energy Education and Teaching
EPower System Modeling and Simulation
Power System Operation and Control
Power System Planning and Management
Security Assessment and Risk Analysis
Transmission and Distribution Systems
Renewable Energies
Geothermal, Biomass and Thermal solar power plant
Hydrogen, Fuel cells, Energy Carriers and Electric Storage
Integration of Renewable energy
Ocean and Tidal energy
PV energy
Small Hydro power plant
Wind energy
Sensing & Monitoring
Advanced metering infrastructure
Fault diagnosis
Monitoring tools for power and performance
Power leakage and dissipation
Power-aware networking
Power-aware algorithms and protocols
Power-aware applications
Power-aware middleware, software and hardware
Sensors for climate monitoring
Smart Systems
Electric Vehicles
Smart Buildings
Smart Urban Development
Smart Energy Consumption
Smart Energy Management Systems and Demand Side Applications
Smart Grid and Microgrids
Smart Transportation and Manufacturing
General
Sustainable Energy
05月16日
2017
05月19日
2017
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