Photometer for Measuring the Characteristics of the Light Source with Directed Light Radiation

P. Neyezhmakov, E. Tymofeiev, О. Lyashenko
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Abstract

The accuracy of the measurement of the main photometric characteristic of the emitter determines the error for determining the total light flux of the light sources, especially light emitting diodes, for which it should not exceed 5 per cent. Existing measurement methods with the use of integrated spheres, goniophotometers and goniophotometers of the near field require a great deal of time and have a great deal of value. To eliminate these shortcomings, a method for measuring the characteristics of light sources with directed light distribution is proposed based on the use of a set of meters located in a plane perpendicular to the main direction of the source radiation propagation. On the basis of this method, a photometer for measuring the characteristics of the directional light sources is developed, which allows to quickly, in real time, determine the characteristics of the emitters. The method of determining the parameters of light distribution of directed sources of light for the construction of its photometric body is not required to use a rotary means. Taking into account the significant influence of temperature fluctuations on the characteristics of LED light sources, it is possible will upgrade the proposed method for determining the photometric body of the radiation source in real time and when the temperature changes due to the introduction of additional elements in the future.
测量定向光辐射光源特性的光度计
发射器主要光度特性的测量精度决定了确定光源,特别是发光二极管的总光通量的误差,对于这种误差不应超过5%。现有的使用积分球、角度计和近场角度计的测量方法需要大量的时间,并且具有很大的价值。为了消除这些缺点,提出了一种测量具有定向光分布的光源特性的方法,该方法基于使用位于垂直于源辐射传播的主方向的平面中的一组仪表。在这种方法的基础上,开发了一种用于测量定向光源特性的光度计,该光度计可以快速、实时地确定发射器的特性。用于构造其光度主体的定向光源的光分布参数的确定方法不需要使用旋转装置。考虑到温度波动对LED光源特性的重大影响,未来可能会升级所提出的实时确定辐射源光度体的方法,以及当温度因引入额外元素而发生变化时。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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