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Research on Effects of Baffle Position in an Integrating Sphere on the Luminous Flux Measurement

机译:积分球中挡板位置对光通量测量影响的研究

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In the field of optical metrology, luminous flux is an important index to characterize the quality of electric light source. Currently, the majority of luminous flux measurement is based on the integrating sphere method, so measurement accuracy of integrating sphere is the key factor. There are plenty of factors affecting the measurement accuracy, such as coating, power and the position of light source. However, the baffle which is a key part of integrating sphere has important effects on the measurement results. The paper analyzes in detail the principle of an ideal integrating sphere. We use moving rail to change the relative position of baffle and light source inside the sphere. By experiments, measured luminous flux values at different distances between the light source and baffle are obtained, which we used to take analysis of the effects of different baffle position on the measurement. By theoretical calculation, computer simulation and experiment, we obtain the optimum position of baffle for luminous flux measurements. Based on the whole luminous flux measurement error analysis, we develop the methods and apparatus to improve the luminous flux measurement accuracy and reliability. It makes our unifying and transferring work of the luminous flux more accurate in East China and provides effective protection for our traceability system.
机译:在光学计量领域,光通量是表征电光源质量的重要指标。当前,大多数光通量测量都是基于积分球法,因此积分球的测量精度是关键因素。有很多因素会影响测量精度,例如涂层,功率和光源位置。然而,挡板是积分球的关键部分,对测量结果有重要影响。本文详细分析了理想积分球的原理。我们使用移动导轨来更改挡板和光源在球体内的相对位置。通过实验,获得了在光源和挡板之间不同距离处测得的光通量值,我们用它来分析不同挡板位置对测量的影响。通过理论计算,计算机仿真和实验,我们获得了用于光通量测量的挡板的最佳位置。在对整个光通量测量误差进行分析的基础上,开发了提高光通量测量精度和可靠性的方法和装置。它使我们在华东地区光通量的统一和传输工作更加准确,并为我们的可追溯性系统提供了有效的保护。

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