A Solid State Pyranometer

Anca Laura Dumitrescu, M. Paulescu, A. Ercuta
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引用次数: 1

Abstract

Abstract The construction of a solid state device-based pyranometer designated to broadband irradiance measurements is presented in this paper. The device is built on the physical basis that the temperature difference between two bodies of identical shape and external surface area, identically exposed to the incident radiation, but having different absorption and heat transfer coefficients (e.g. one body is painted white and the other is painted black), is proportional to the incident irradiance. This proportionality may be put in evidence if the two bodies consisting of identical arrays of correspondingly painted semiconductor diodes, due to the thermal behaviour of their p-n junction. It is theoretically predicted and experimentally confirmed that the voltage drop across a diode passed through a constant forward current linearly decreases with the temperature of the junction. In other words, a signal proportional to the irradiance of the light source may be obtained via conventional analog electronics. The calibration of the apparatus, as performed by means of a professional device (LP PYRA 03), indicates a good linearity.
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固态高温计
本文介绍了一种用于宽带辐照度测量的基于固态器件的高强计的结构。该装置的物理基础是,两个相同形状和外表面积的物体,同样暴露在入射辐射中,但具有不同的吸收和传热系数(例如,一个物体涂成白色,另一个涂成黑色)之间的温差与入射辐照度成正比。如果两个物体由相同的相应涂漆的半导体二极管阵列组成,由于它们的pn结的热行为,这种比例性可能会得到证明。从理论上预测和实验上证实,通过恒定正向电流的二极管的压降随结温线性减小。换句话说,可以通过常规模拟电子学获得与光源辐照度成比例的信号。通过专业仪器(LP PYRA 03)对仪器进行了校准,结果显示线性度良好。
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