ASTM E1021-2006 Standard Test Method for Spectral Responsivity Measurements of Photovoltaic Devices《光电装置的光谱响应测量的标准试验方法》.pdf
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1、Designation: E 1021 06Standard Test Method forSpectral Responsivity Measurements of PhotovoltaicDevices1This standard is issued under the fixed designation E 1021; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revision, the year of last re
2、vision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon (e) indicates an editorial change since the last revision or reapproval.1. Scope1.1 This test method is to be used to determine either theabsolute or relative spectral responsivity response of a single-juncti
3、on photovoltaic device. This test method requires the useof a bias light.1.2 This standard does not purport to address all of thesafety concerns, if any, associated with its use. It is theresponsibility of the user of this standard to establish appro-priate safety and health practices and determine
4、the applica-bility of regulatory limitations prior to use.2. Referenced Documents2.1 ASTM Standards:2E 691 Practice for Conducting an Interlaboratory Study toDetermine the Precision of a Test MethodE 772 Terminology Relating to Solar Energy ConversionE 927 Specification for Solar Simulation for Phot
5、ovoltaicTestingE 948 Test Method for Electrical Performance of Photovol-taic Cells Using Reference Cells Under Simulated SunlightE 973 Test Method for Determination of the Spectral Mis-match Parameter Between a Photovoltaic Device and aPhotovoltaic Reference CellE 1036 Test Methods for Electrical Pe
6、rformance of Non-concentrator Terrestrial Photovoltaic Modules and ArraysUsing Reference CellsE 1125 Test Method for Calibration of Primary Non-Concentrator Terrestrial Photovoltaic Reference Cells Us-ing a Tabular SpectrumE 1328 Terminology Relating to Photovoltaic Solar EnergyConversionE 1362 Test
7、 Method for Calibration of Non-ConcentratorPhotovoltaic Secondary Reference CellsE 2236 Test Methods for Measurement of Electrical Perfor-mance and Spectral Response of Nonconcentrator Multi-junction Photovoltaic Cells and ModulesG 173 Tables for Reference Solar Spectral Irradiances:Direct Normal an
8、d Hemispherical on 37 Tilted Surface3. Terminology3.1 DefinitionsDefinitions of terms used in this testmethod may be found in Terminology E 772 and in Terminol-ogy E 1328.3.2 Definitions of Terms Specific to This Standard:3.2.1 chopper, na rotating blade or other device used tomodulate a light sourc
9、e.3.2.2 device under test (DUT), na photovoltaic devicethat is subjected to a spectral responsivity measurement.3.2.3 irradiance mode calibration, na calibration methodin which the reference photodetector measures the irradianceproduced by the monochromatic beam.3.2.4 monitor photodetector, na photo
10、detector incorpo-rated into the optical system to monitor the amount of lightreaching the device under test, enabling adjustments to bemade to accommodate varying light intensity.3.2.5 monochromatic beam, nchopped light from a mono-chromatic source reaching the reference photodetector ordevice under
11、 test.3.2.6 monochromator, nan optical device that allows aselected wavelength of light to pass while blocking otherwavelengths.3.2.7 power mode calibration, na calibration method inwhich the reference photodetector measures the power in themonochromatic beam.3.2.8 quantum effciency, nnumber of coll
12、ected electronsper incident photon at a specific wavelength in percent units.3.2.9 reference photodetector, na photodetector used toquantify the amount of light in monochromatic beam.3.2.10 spectral bandwidth, nthe range of wavelengths in amonochromatic light source, determined as the differencebetw
13、een its half-maximum-intensity wavelengths.3.3 Symbols: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 approved N
14、ov. 1, 2006. Published January 2007. Originallyapproved in 1993. Last previous edition approved in 2001 as E 1021 95 (2001).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, r
15、efer to the standards Document Summary page onthe ASTM website.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.3.3.1 The following symbols and units are used in this testmethod.Ailluminated device area, m2,cspeed of light in vacuum,
16、ms1,CVMimonitor photodetector calibration value for irradi-ance mode, Am2W1,CVMpmonitor photodetector calibration value for powermode, AW1esmall wavelength interval, nm or m,Eo reference total irradiance, Wm2,Eo(l)reference spectral irradiance, Wm2nm1orWm2m1,EMmonochromatic source irradiance, Wm2,Er
17、rfractional error in measurement, dimensionless,hPlancks constant, Js,Icurrent, A,Imcmonitor photodetector current during calibration, A,lmtmonitor photodetector current during test, A,Iscsolar cell short-circuit current, A,IoIscunder Eo(l), A,Jscsolar cell short-circuit current density, Am2,Kirelat
18、ive-to-absolute spectral responsivity conversionconstant for irradiance mode, Am2W1,Kprelative-to-absolute spectral responsivity conversionconstant for power mode, AW1,lwavelength, nm or m,loa specific wavelength, nm or m,Mspectral mismatch parameter,Pmonochromatic beam power reaching the photodetec
19、tor,W,fpower of the monochromatic beam or irradiance of themonochromatic beam, W or Wm2,qelementary charge, C,Qexternal quantum efficiency,Riaabsolute spectral responsivity for irradiance mode,Am2W1,Rpaabsolute spectral responsivity for power mode,AW1,Rirrelative spectral responsivity for irradiance
20、 mode, di-mensionless,Rprrelative spectral responsivity for power mode, dimen-sionless,SRspectral responsivity, AW1or Am2W1.3.3.2 Symbolic quantities that are functions of wavelengthappear as X (l).4. Summary of Test Methods4.1 The spectral responsivity of a photovoltaic device,defined as the output
21、 current per input irradiance or radiantpower at a given wavelength, and normally reported over thewavelength range to which the device responds, is determinedby the following procedure:4.1.1 A monochromatic, chopped beam of light is directedat normal incidence onto the cell. Simultaneously, a conti
22、nuouswhite light beam (bias light) is used to illuminate the DUT atirradiance levels between one third and one half of normal enduse operating conditions intended for the device. See Fig. 1.4.1.2 The magnitude of the ac (chopped) component of thecurrent at the intended voltage is monitored as the wa
23、velengthof the incident light is varied over the spectral response rangeof the device.4.2 Measurement of the absolute spectral responsivity of adevice requires knowledge of the absolute beam power orirradiance produced by the monochromatic beam. The totalpower or irradiance of the monochromatic beam
24、 incident onthe device is determined by the reference photodetector (see6.1). The absolute spectral responsivity of the device can thenbe computed using the measured device photocurrent and thepower or irradiance of the monochromatic beam.4.3 The choice of power versus irradiance mode maydepend on t
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