ASTM E1125-2010(2015) Standard Test Method for Calibration of Primary Non-Concentrator Terrestrial Photovoltaic Reference Cells Using a Tabular Spectrum《采用平面光谱法校准初级非浓缩器的地面光电参比电池的标准.pdf
《ASTM E1125-2010(2015) Standard Test Method for Calibration of Primary Non-Concentrator Terrestrial Photovoltaic Reference Cells Using a Tabular Spectrum《采用平面光谱法校准初级非浓缩器的地面光电参比电池的标准.pdf》由会员分享,可在线阅读,更多相关《ASTM E1125-2010(2015) Standard Test Method for Calibration of Primary Non-Concentrator Terrestrial Photovoltaic Reference Cells Using a Tabular Spectrum《采用平面光谱法校准初级非浓缩器的地面光电参比电池的标准.pdf(6页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: E1125 10 (Reapproved 2015)Standard Test Method forCalibration of Primary Non-Concentrator TerrestrialPhotovoltaic Reference Cells Using a Tabular Spectrum1This standard is issued under the fixed designation E1125; the number immediately following the designation indicates the year ofori
2、ginal adoption or, in the case of revision, the year of last revision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon () indicates an editorial change since the last revision or reapproval.1. Scope1.1 This test method is intended to be used for calibrationand cha
3、racterization of primary terrestrial photovoltaic refer-ence cells to a desired reference spectral irradiancedistribution, such as Tables G173. The recommended physicalrequirements for these reference cells are described in Speci-fication E1040. Reference cells are principally used in thedeterminati
4、on of the electrical performance of photovoltaicdevices.1.2 Primary photovoltaic reference cells are calibrated innatural sunlight using the relative spectral response of the cell,the relative spectral distribution of the sunlight, and a tabulatedreference spectral irradiance distribution.1.3 This t
5、est method requires the use of a pyrheliometer thatis calibrated according to Test Method E816, which requiresthe use of a pyrheliometer that is traceable to the WorldRadiometric Reference (WRR). Therefore, reference cellscalibrated according to this test method are traceable to theWRR.1.4 This test
6、 method is a technique that may be used insteadof the procedures found in Test Method E1362. This testmethod offers convenience in its ability to characterize areference cell under any spectrum for which tabulated data areavailable. The selection of the specific reference spectrum isleft to the user
7、.1.5 This test method applies only to the calibration of aphotovoltaic cell that shows a linear dependence of its short-circuit current on irradiance over its intended range of use, asdefined in Test Method E1143.1.6 This test method applies only to the calibration of areference cell fabricated with
8、 a single photovoltaic junction.1.7 The values stated in SI units are to be regarded asstandard. No other units of measurement are included in thisstandard.1.8 This standard does not purport to address all of thesafety concerns, if any, associated with its use. It is theresponsibility of the user of
9、 this standard to establish appro-priate safety and health practices and determine the applica-bility of regulatory limitations prior to use.2. Referenced Documents2.1 ASTM Standards:2E772 Terminology of Solar Energy ConversionE816 Test Method for Calibration of Pyrheliometers byComparison to Refere
10、nce PyrheliometersE948 Test Method for Electrical Performance of Photovol-taic Cells Using Reference Cells Under Simulated Sun-lightE973 Test Method for Determination of the Spectral Mis-match Parameter Between a Photovoltaic Device and aPhotovoltaic Reference CellE1021 Test Method for Spectral Resp
11、onsivity Measurementsof Photovoltaic DevicesE1040 Specification for Physical Characteristics of Noncon-centrator Terrestrial Photovoltaic Reference CellsE1328 Terminology Relating to Photovoltaic Solar EnergyConversion (Withdrawn 2012)3E1362 Test Method for Calibration of Non-ConcentratorPhotovoltai
12、c Secondary Reference CellsG173 Tables for Reference Solar Spectral Irradiances: DirectNormal and Hemispherical on 37 Tilted Surface3. Terminology3.1 DefinitionsDefinitions of terms used in this testmethod may be found in Terminology E772 and TerminologyE1328.3.2 Symbols:3.2.1 The following symbols
13、and units are used in this testmethod:Wavelength, nm or m,1This test method is under the jurisdiction of ASTM Committee E44 on Solar,Geothermal and OtherAlternative Energy Sources and is the direct responsibility ofSubcommittee E44.09 on Photovoltaic Electric Power Conversion.Current edition approve
14、d March 1, 2015. Published April 2015. Originallyapproved in 1986. Last previous edition approved in 2010 as E1125 10. DOI:10.1520/E1125-10R15.2For referenced ASTM standards, visit the ASTM website, www.astm.org, orcontact ASTM Customer Service at serviceastm.org. For Annual Book of ASTMStandards vo
15、lume information, refer to the standards Document Summary page onthe ASTM website.3The last approved version of this historical standard is referenced onwww.astm.org.Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959. United States1IscShort-circuit cur
16、rent, A,EIrradiance, Wm2,EtTotal irradiance, Wm2,E()Spectral irradiance, Wm2m1,R()Spectral response, AW1,Rr()Reference cell spectral response, AW1,TTemperature, C,Temperature coefficient of reference cell Isc,C1,nTotal number of data points,CCalibration constant, Am2W1,MSpectral mismatch parameter,F
17、Spectral correction factor, andSStandard deviation.4. Summary of Test Method4.1 The calibration of a primary photovoltaic reference cellconsists of measuring the short-circuit current of the cell whenilluminated with natural sunlight, along with the total solarirradiance using a pyrheliometer. The r
18、atio of the short-circuitcurrent of the cell to the irradiance, divided by a correctionfactor similar to the spectral mismatch parameter defined inTest Method E973, is the calibration constant for the referencecell. Also, if the temperature of the cell is not 25 6 1C, theshort-circuit current must b
19、e corrected to 25C.4.1.1 The relative spectral irradiance of the sunlight ismeasured using a spectral irradiance measurement instrumentas specified in Test Method E973.4.2 The following is a list of measurements that are used tocharacterize reference cells and are reported with the calibra-tion data
20、:4.2.1 The spectral response of the cell is determined inaccordance with Test Methods E1021.4.2.2 The cells short-circuit current temperature coefficientis determined experimentally by measuring the short-circuitcurrent at various temperatures and computing the temperaturecoefficient (see 7.2.2).4.2
21、.3 Linearity of short-circuit current versus irradiance isdetermined in accordance with Test Method E1143.4.2.4 The fill factor of the reference cell is determined usingTest Method E948. Providing the fill factor with the calibrationdata allows the reference cell to be checked in the future forelect
22、rical degradation or damage.5. Significance and Use5.1 The electrical output of a photovoltaic device is depen-dent on the spectral content of the illumination source, itsintensity, and the device temperature. To make standardized,accurate measurements of the performance of photovoltaicdevices under
23、 a variety of light sources, it is necessary toaccount for the error in the short-circuit current that occurs ifthe relative spectral response of the reference cell is notidentical to the spectral response of the device to be tested. Asimilar error occurs if the spectral irradiance distribution of t
24、hetest light source is not identical to the desired reference spectralirradiance distribution. These errors are accounted for by thespectral mismatch parameter (described in Test Method E973),a quantitative measure of the error in the short-circuit currentmeasurement. It is the intent of this test m
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