Ojanen Maija, Kärhä Petri, Ikonen Erkki
Helsinki University of Technology (TKK), Metrology Research Institute, P.O.B. 3000, FI-02015 TKK, Espoo, Finland.
Appl Opt. 2010 Feb 10;49(5):880-6. doi: 10.1364/AO.49.000880.
We have developed a physical model for the spectral irradiance of 1 kW tungsten halogen incandescent lamps for the wavelength range 340-850 nm. The model consists of the Planck's radiation law, published values for the emissivity of tungsten, and a residual spectral correction function taking into account unknown factors of the lamp. The correction function was determined by measuring the spectra of a 1000 W, quartz-halogen, tungsten coiled filament (FEL) lamp at different temperatures. The new model was tested with lamps of types FEL and 1000 W, 120 V quartz halogen (DXW). Comparisons with measurements of two national standards laboratories indicate that the model can account for the spectral irradiance values of lamps with an agreement better than 1% throughout the spectral region studied. We further demonstrate that the spectral irradiance of a lamp can be predicted with an expanded uncertainty of 2.6% if the color temperature and illuminance values for the lamp are known with expanded uncertainties of 20 K and 2%, respectively. In addition, it is suggested that the spectral irradiance may be derived from resistance measurements of the filament with lamp on and off.
我们已经针对波长范围为340 - 850 nm的1千瓦卤钨白炽灯的光谱辐照度开发了一个物理模型。该模型由普朗克辐射定律、已发表的钨发射率值以及一个考虑到灯的未知因素的残余光谱校正函数组成。校正函数是通过测量1000瓦石英卤钨螺旋灯丝(FEL)灯在不同温度下的光谱来确定的。新模型在FEL型灯以及1000瓦、120伏石英卤钨灯(DXW)上进行了测试。与两个国家标准实验室的测量结果进行比较表明,在整个研究的光谱区域内,该模型能够以优于1%的一致性解释灯的光谱辐照度值。我们进一步证明,如果灯的色温及照度值的扩展不确定度分别为20 K和2%,那么灯的光谱辐照度可以在扩展不确定度为2.6%的情况下进行预测。此外,建议可以根据灯丝在灯亮和灯灭时的电阻测量值来推导光谱辐照度。