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SPIE - OPTOELECTRONICS OF SOLAR - OPTOELECTRONICS OF SOLAR CELLS Organization: SPIE
Date: 2009-01-01
Description: With concerns about worldwide environmental security, global warming, and climate change due to emissions of carbon dioxide from the burning of fossil fuels, it is desirable to have a wide range of energy technologies in a nation's portfolio. Photovoltaics, or solar cells, are a viable option as a nonpolluting renewable energy source.
CENELEC - EN 62109-1 - SAFETY OF POWER CONVERTERS FOR USE IN PHOTOVOLTAIC POWER SYSTEMS - PART 1: GENERAL REQUIREMENTS Organization: CENELEC
Date: 2010-07-01
Description: Equipment for which other requirements may apply This standard has not been written to address characteristics of power sources other than photovoltaic systems, such as wind turbines, fuel cells, rotating machine sources, etc.
IEC 62109-1 - SAFETY OF POWER CONVERTERS FOR USE IN PHOTOVOLTAIC POWER SYSTEMS – PART 1: GENERAL REQUIREMENTS - EDITION 1.0 Organization: IEC
Date: 2010-04-01
Description: Equipment for which other requirements may apply This standard has not been written to address characteristics of power sources other than photovoltaic systems, such as wind turbines, fuel cells, rotating machine sources, etc.
UL 62109-1 - UL STANDARD FOR SAFETY OF POWER CONVERTERS FOR USE IN PHOTOVOLTAIC POWER SYSTEMS – PART 1: GENERAL REQUIREMENTS - FIRST EDITION Organization: UL
Date: 2014-07-18
Description: Equipment for which other requirements may apply This standard has not been written to address characteristics of power sources other than photovoltaic systems, such as wind turbines, fuel cells, rotating machine sources, etc.
CENELEC - EN 62116 - UTILITY-INTERCONNECTED PHOTOVOLTAIC INVERTERS - TEST PROCEDURE OF ISLANDING PREVENTION MEASURES Organization: CENELEC
Date: 2014-07-01
Description: This standard may be applied to other types of utility-interconnected systems (e.g. inverterbased microturbine and fuel cells, induction and synchronous machines). However, technical review may be necessary for other than inverter-based PV systems.
CEI EN 62116 - UTILITY-INTERCONNECTED PHOTOVOLTAIC INVERTERS – TEST PROCEDURE OF ISLANDING PREVENTION MEASURES Organization: CEI
Date: 2015-12-01
Description: This standard may be applied to other types of utility-interconnected systems (e.g. inverterbased microturbine and fuel cells, induction and synchronous machines). However, technical review may be necessary for other than inverter-based PV systems.
DS/EN 61850-7-420 - COMMUNICATION NETWORKS AND SYSTEMS FOR POWER UTILITY AUTOMATION - PART 7-420: BASIC COMMUNICATION STRUCTURE - DISTRIBUTED ENERGY RESOURCES LOGICAL NODES Organization: DS
Date: 2009-07-07
Description: This International Standard defines the IEC 61850 information models to be used in the exchange of information with distributed energy resources (DER), which comprise dispersed generation devices and dispersed storage devices, including reciprocating engines, fuel cells, microturbines, photovoltaics, combined heat and power, and energy storage.
IEEE 1547.3 - GUIDE FOR MONITORING, INFORMATION EXCHANGE, AND CONTROL OF DISTRIBUTED RESOURCES INTERCONNECTED WITH ELECTRIC POWER SYSTEMS Organization: IEEE
Date: 2007-05-17
Description: It describes functionality, parameters, and methodologies for MIC of DR interconnected with or associated with EPSs. DR technologies include fuel cells, photovoltaics, wind turbines, microturbines, and other distributed generators as well as distributed energy storage systems.
WILEY - ENERGIZING OUR FUTURE: RA - ENERGIZING OUR FUTURE: RATIONAL CHOICES FOR THE 21ST CENTURY Organization: WILEY
Date: 2008-01-01
Description: Coverage includes: Global warming The hydrogen economy Nuclear energy and the plutonium economy Conventional oil and oil reserves Coal and bituminous reserves Biomass and ethanol Methanol Diesel and biodiesel Solar energy and photovoltaics Fuel cells for stationary and mobile use This insightful and much-needed perspective represents the first comprehensive review of the rational alternative energy choices for the twenty-first century.
WILEY - INTEGRATION OF ALTERNATIV - INTEGRATION OF ALTERNATIVE SOURCES OF ENERGY Organization: WILEY
Date: 2006-01-01
Description: Next, the authors explore both common and up-and-coming alternative energy sources, including hydro, wind, solar, photovoltaic, thermosolar, fuel cells, and biomass. Following that are discussions of microturbines and induction generators, as well as a special chapter dedicated to energy storage systems.
SAE/TP - 2009-01-3159 - HIGH ALTITUDE PLATFORMS FOR TELECOMMUNICATIONS: DESIGN METHODOLOGY Organization: SAE/TP
Date: 2009-11-10
Description: In practice the energy is harvested by photovoltaic panels and stored in hydrogen fuel cells. We denote this new technology with the acronym P.S.I.C.H.E.
ETSI - TR 102 532 - ENVIRONMENTAL ENGINEERING (EE); THE USE OF ALTERNATIVE ENERGY SOLUTIONS IN TELECOMMUNICATION INSTALLATIONS - V1.2.1 Organization: ETSI
Date: 2012-11-01
Description: Such alternative energy sources are: • fuel cells; • photovoltaic generators; • wind turbine generators; • micro hydro generators; • stirling machine; • alternative cooling sources, e.g. geo-cooling, fresh air cooling (or free cooling), absorption machines.
SAE/TP - 2011-01-2682 - CHARACTERISATION OF A UAV ELECTRIC ARCHITECTURE AND POWER DEMAND PROFILE FOR THE PURPOSES OF IMPROVING OVERALL SYSTEM EFFICIENCY AND PERFORMANCE Organization: SAE/TP
Date: 2011-10-18
Description: With an increasing presence of advanced energy generation and storage devices in UAV power architectures such as fuel cells, photovoltaics, super capacitors etc. and an increasing potential to dynamically control a UAV system's load profiles, mission effectiveness can be substantially improved via intelligent power management techniques as well as through traditional efficiency improvements.
SAE R-227 - ALTERNATIVE CARS IN THE 21ST CENTURY A NEW PERSONAL TRANSPORTATION PARADIGM - SECOND EDITION; TO PURCHASE CALL 1-800-854-7179 USA/CANADA OR 303-397-7956 WORLDWIDE Organization: SAE
Date: 2003-10-17
Description: I am perhaps biased in his favor because of having personally entered the serious mobility field from the standpoint of very efficient specialty vehicles that had to rely on the puny power of human muscles or photovoltaic cells. The alternative car field has evolved from a century featuring many car developments, both technological and societal.

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