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BS EN 60904-7-2009 光电器件.第7部分:光电器件测量的光谱失谐修 [复制链接]



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    发表于 2012-3-27 17:38:37 |只看该作者 |倒序浏览
                       【英文标准名称】:     Photovoltaic devices —Part 7: Computation of the spectralmismatch correction for measurementsof photovoltaic devices            【原文标准名称】:     光电器件.第7部分:光电器件测量的光谱失谐修正的估算            【标准号】:     BS EN 60904-7-2009            【标准状态】:     现行            【国别】:     英国            【发布日期】:     2009-05-31    【实施或试行日期】: 2009-05-31【发布单位】: 英国标准学会(GB-BSI)【起草单位】: BSI【标准类型】: ()【标准水平】: ()【中文主题词】: 调节;校正;元部件;校正因子;修正;测定;漂移;电气工程;外壳;作标记;数学计算;失配;模数;安装;光电的;参考装置;选择;太阳能电池;太阳能收集器;太阳能动力装置;规范(验收);光谱辐照度;技术数据单;试验【英文主题词】: Adjustment;Calibration;Components;Correction factor;Corrections;Determination;Drift;Electrical engineering;Enclosures;Marking;Mathematical calculations;Mismatch;Modules;Mountinghotovoltaics;Reference devices;Selection;Solar cells;Solar collectors;Solar-powered devices;Specification (approval);Spectral irradiance;Technical data sheets;Testing;【摘要】: This part of IEC 60904 describes the procedure for correcting the bias error introduced in thetesting of a photovoltaic device, caused by the mismatch between the test spectrum and thereference spectrum and by the mismatch between the spectral responses (SR) of thereference cell and of the test specimen. The procedure applies only to photovoltaic deviceslinear in SR as defined in IEC 60904-10. This procedure is valid for single junction devicesbut the principle may be extended to cover multijunction devices.The purpose of this standard is to give guidelines for the correction of measurement bias,should there be a mismatch between both the test spectrum and the reference spectrum andbetween the reference device SR and the test specimen SR.Since a PV device has a wavelength-dependent response, its performance is significantlyaffected by the spectral distribution of the incident radiation, which in natural sunlight varieswith several factors such as location, weather, time of year, time of day, orientation of thereceiving surface, etc., and with a simulator varies with its type and conditions. If theirradiance is measured with a thermopile-type radiometer (that is not spectrally selective) orwith a reference solar cell, the spectral irradiance distribution of the incoming light must beknown to make the necessary corrections to obtain the performance of the PV device underthe reference solar spectral distribution defined in IEC 60904-3.If a reference PV device or a thermopile type detector is used to measure the irradiance then,following the procedure given in this standard, it is possible to calculate the spectral mismatchcorrection necessary to obtain the short-circuit current of the test PV device under thereference solar spectral irradiance distribution included in Table 1 of IEC 60904-3 or anyother reference spectrum. If the reference PV device has the same relative spectral responseas the test PV device then the reference device automatically takes into account deviations ofthe real light spectral distribution from the standard spectral distribution, and no furthercorrection of spectral bias errors is necessary. In this case, location and weather conditionsare not critical when the reference device method is used for outdoor performancemeasurements provided both reference cell and test PV device have the same relativespectral response. Also, for identical relative SR’s, the spectral classification of the simulatoris not critical for indoor measurements.If the performance of a PV device is measured using a known spectral irradiance distribution,its short-circuit current at any other spectral irradiance distribution can be computed using thespectral response of the PV test device.【中国标准分类号】: L50【国际标准分类号】: 27_160【页数】: 14P.;A4【正文语种】: 英语         
             
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