COMBINED OUT OF RANGE AND IN BAND STRAY LIGHT CORRECTION FOR ARRAY SPECTRORADIOMETERS

R. Zuber, Mario Ribnitzky
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Abstract

Insufficient stray light rejection of array spectroradiometers, in especially the UV spectral range, limits the application of these devices. One important example would be UV hazard measurements. This study shows that a combination of different stray light corrections methods can improve the stray light reduction performance of UV array spectroradiometers significantly, to meet these requirements. The ACGIH Eeff (identical ICNIRP) values measured with an uncorrected array spectroradiometer showed expected large deviations of 73% for a sunbed tanning lamp and 105% for a halogen lamp, relative to a double monochromator reference. With the applied combined Out-of-Range and In-Band stray light correction method, these measurements were within 3% of the reference double monochromator based system. Furthermore, the measurements showed a detection limit of 2E-5 W/m2/nm for the double monochromator and comparable 3E-5 W/m2/nm for the stray light corrected array spectroradiometer. This was in contrast to 5E-4 W/m2/nm for the uncorrected array spectroradiometer. The results suggest that photobiological safety measurements according to IEC / DIN EN 62471 are possible with the applied combined stray light correction method for the used spectroradiometer.
阵列光谱辐射计的带外杂散光联合校正
阵列光谱辐射计的杂散光抑制能力不足,特别是在紫外光谱范围内,限制了这些器件的应用。一个重要的例子是紫外线危害测量。本研究表明,不同杂散光校正方法的组合可以显著提高紫外阵列光谱仪的杂散光抑制性能,以满足这些要求。用未校正的阵列光谱辐射计测量的ACGIH Eeff(相同的ICNIRP)值显示,相对于双单色参考,太阳浴床晒黑灯和卤素灯的预期偏差分别为73%和105%。结合应用的超距离和带内杂散光校正方法,这些测量值在参考双单色仪系统的3%以内。此外,测量结果表明,双单色仪的检测限为2E-5 W/m2/nm,杂散光校正阵列光谱仪的检测限为3E-5 W/m2/nm。这与未校正阵列光谱辐射计的5E-4 W/m2/nm形成对比。结果表明,根据IEC / DIN EN 62471的光生物安全性测量是可能的,使用组合杂散光校正方法用于所使用的光谱辐射计。
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