ASTM E927-2010 3750 Standard Specification for Solar Simulation for Terrestrial Photovoltaic Testing《大地光电测试用阳光模拟的标准规范》.pdf
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1、Designation: E927 10Standard Specification forSolar Simulation for Photovoltaic Testing1This standard is issued under the fixed designation E927; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revision, the year of last revision. A number i
2、n parentheses indicates the year of last reapproval. Asuperscript epsilon () indicates an editorial change since the last revision or reapproval.1. Scope1.1 This specification provides means for classifying solarsimulators intended for indoor testing of photovoltaic devices(solar cells or modules),
3、according to their spectral match to areference spectral irradiance, non-uniformity of spatial irradi-ance, and temporal instability of irradiance.1.2 Testing of photovoltaic devices may require the use ofsolar simulators. Test Methods that require specific classifica-tion of simulators as defined i
4、n this specification include TestMethods E948, E1036, and E1362.1.3 This standard is applicable to both pulsed and steadystate simulators and includes recommended test requirementsused for classifying such simulators.1.4 A solar simulator usually consists of three major com-ponents: (1) light source
5、(s) and associated power supply; (2)any optics and filters required to modify the output beam tomeet the classification requirements in Section 4; and (3) thenecessary controls to operate the simulator, adjust irradiance,etc.1.5 A light source that does not meet all of the definedrequirements for cl
6、assification presented in this document maynot be referred to as a solar simulator.1.6 Spectral irradiance classifications are provided for AirMass 1.5 direct and global (as defined in Tables G173), or AirMass 0 (AM0, as defined in Standard E490).1.7 The classification of a solar simulator is based
7、on thesize of the test plane; simulators with smaller test plane areashave tighter specifications for non-uniformity of spatial irradi-ance.1.8 The data acquisition system may affect the ability tosynchronize electrical measurements with variations in irradi-ance and therefore may be included in thi
8、s specification. In allcases, the manufacturer must specify with the temporal insta-bility classification: (1) how the classification was determined;and (2) the conditions under which the classification wasdetermined.1.9 The classification of a solar simulator does not provideany information about e
9、lectrical measurement errors that arerelated to photovoltaic performance measurements obtainedwith a classified solar simulator. Such errors are dependent onthe actual instrumentation and procedures used.1.10 The values stated in SI units are to be regarded asstandard. No other units of measurement
10、are included in thisstandard.1.11 The following precautionary caveat pertains only to thehazards portion, Section 6, of this specification. This standarddoes not purport to address all of the safety concerns, if any,associated with its use. It is the responsibility of the user of thisstandard to est
11、ablish appropriate safety and health practicesand determine the applicability of regulatory requirementsprior to use.2. Referenced Documents2.1 ASTM Standards:2E490 Standard Solar Constant and Zero Air Mass SolarSpectral Irradiance TablesE772 Terminology Relating to Solar Energy ConversionE948 Test
12、Method for Electrical Performance of Photovol-taic Cells Using Reference Cells Under Simulated SunlightE1036 Test Methods for Electrical Performance of Noncon-centrator Terrestrial Photovoltaic Modules and ArraysUsing Reference CellsE1328 Terminology Relating to Photovoltaic Solar EnergyConversionE1
13、362 Test Method for Calibration of Non-ConcentratorPhotovoltaic Secondary Reference CellsG138 Test Method for Calibration of a SpectroradiometerUsing a Standard Source of IrradianceG173 Tables for Reference Solar Spectral Irradiances: Di-rect Normal and Hemispherical on 37 Tilted Surface2.2 IEC Stan
14、dard:IEC 60904-9 Photovoltaic DevicesPart 9: Solar Simula-tor Performance Requirements3. Terminology3.1 DefinitionsDefinitions of terms used in this specifica-tion may be found in Terminologies E772 and E1328.3.2 Definitions of Terms Specific to This Standard:1This specification is under the jurisdi
15、ction of ASTM Committee E44 on Solar,Geothermal and Other Alternative Energy Sources and is the direct responsibility ofSubcommittee E44.09 on Photovoltaic Electric Power Conversion.Current edition approved June 1, 2010. Published July 2010. Originally approvedin 1983. Last previous edition approved
16、 in 2005 as E927 05. DOI: 10.1520/E0927-10.2For referenced ASTM standards, visit the ASTM website, www.astm.org, orcontact ASTM Customer Service at serviceastm.org. For Annual Book of ASTMStandards volume information, refer to the standards Document Summary page onthe ASTM website.1Copyright ASTM In
17、ternational, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.3.2.1 solar simulatorequipment used to simulate solarradiation. Solar simulators shall be labeled by their mode ofoperation during a test cycle (steady state, single pulse ormulti-pulse) and by the size
18、of the test plane area. A solarsimulator must fall into at least the C classification.3.2.2 simulator classificationa solar simulator may be oneof three classes (A, B, or C) for each of three categories:spectral match, spatial non-uniformity, and temporal instabil-ity. The simulator is rated with th
19、ree letters in order of spectralmatch, spatial non-uniformity and temporal instability (forexample: ClassABA). Large area and small area simulators areclassified according to the appropriate table. The simulatorclassification may be abbreviated by a single letter character-ization.Asimulator charact
20、erized by a single letter is indicativeof a simulator with all three classes being the same (forexample: a Class A simulator is the same as a Class AAAsimulator).3.2.3 test plane area, Athe area of the plane intended tocontain the device under test.3.2.4 small area solar simulatora simulator whose t
21、estplane is equal to or less than 30 cm by 30 cm or a diameter ofless than 30 cm if the test area is circular.3.2.5 large area solar simulatora simulator whose testplane is greater than 30 cm by 30 cm or a diameter of greaterthan 30 cm if the test area is circular.3.2.6 steady-state simulatora simul
22、ator whose irradianceoutput at the test plane area does not vary more than 5 % fortime periods of greater than 100 ms.3.2.7 single-pulse simulatora simulator whose irradianceoutput at the test plane area consists of a short duration lightpulse of 100 ms or less.3.2.8 multi-pulse simulatora simulator
23、 whose irradianceoutput at the test plane area consists of a series of shortduration, periodic light pulses. Note that the light pulses do notnecessarily have to go to zero irradiance between pulses; asteady-state simulator that fails the 5 % requirement in 3.2.6can be classified as a multi-pulse si
24、mulator if the irradiancevariations are periodic.3.2.9 time of data acquisitionthe time required to obtainone data point (irradiance, current, and voltage) if there is asimultaneous measurement of irradiance at each current-voltage data point. If no simultaneous measurement of theirradiance is made
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