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Characterization and calibration of broadband ultraviolet radiometers

机译:宽带紫外辐射计的表征和校准

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摘要

The band responsivities of radiometers for measuring ultraviolet irradiance or dosage in the UVA, UVB and UVC spectral regions are source-dependent and require spectrally weighted measurements for calibration. Currently, however, many industrial users lack knowledge of this and may use a radiometer originally calibrated using one particular type of source to measure UV radiation from a source of a different type. Worse still, when this radiometer is later sent for recalibration, the calibration laboratory could use a source of a third type. This problem results in considerable discrepancies, as high as 20% to 50%, in the calibration of UV radiometers, and consequent errors in actual measurements. Efforts are being made by the International Commission on Illumination (CIE) to standardize the calibration method and industrial uses of UV radiometers. This paper reviews the measurement principles of broadband radiometers and examines, both theoretically and experimentally, the effects of spectral distribution on the responsivities of several commonly used UV sources. The analysis agrees well with the experimental results. The methods of characterization and calibration of these radiometers are also discussed in detail.
机译:用于测量UVA,UVB和UVC光谱区域中的紫外线辐照度或剂量的辐射计的带响应度与光源有关,并且需要光谱加权测量才能进行校准。然而,当前,许多工业用户对此不了解,并且可能使用最初使用一种特定类型的源进行校准的辐射计来测量来自不同类型的源的紫外线辐射。更糟糕的是,当稍后将该辐射计发送进行重新校准时,校准实验室可能会使用第三种类型的辐射源。此问题导致UV辐射计的校准中出现相当大的差异,高达20%至50%,并因此导致实际测量中的误差。国际照明委员会(CIE)致力于标准化紫外辐射计的校准方法和工业用途。本文回顾了宽带辐射计的测量原理,并在理论上和实验上研究了光谱分布对几种常用紫外线源的响应度的影响。分析与实验结果非常吻合。还详细讨论了这些辐射计的表征和校准方法。

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