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首页> 外文期刊>Telecommunications and Radio Engineering >ANALYSIS OF A SOLAR SIMULATOR BASED ON THE ELECTRODELESS SULFUR LAMP FOR PHOTOVOLTAIC DEVICES
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ANALYSIS OF A SOLAR SIMULATOR BASED ON THE ELECTRODELESS SULFUR LAMP FOR PHOTOVOLTAIC DEVICES

机译:光电器件的基于无硫硫灯泡的太阳能模拟器的分析

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摘要

At the present time, there has been an intensive growth in the use of solar energy, which is the most affordable renewable energy source for humanity. In this regard, there is a need for testing of solar cells and modules used to collect solar energy. In the laboratory conditions for testing of the photovoltaic devices are used of solar simulations, which have very close parameters to the solar radiation. The basic element of the solar simulation is artificial light sources. The output spectrum of the solar radiation simulator should be close to the spectral distribution of sunlight in the wavelength range (400-1100 nm) under AM 1.5G conditions, as defined in ASTM G173-03 standard. The goal of this paper is to determine the spectral match based on ASTM E927-10 standard in the 400 nm – 700 nm region for a powerful electrodeless sulfur lamp with microwave excitation, which is proposed as a light source for a solar radiation simulator. The sulfur lamp has a continuous quasisolar spectrum of optical radiation in the visible range, where the spectral sensitivity of the solar cells is most effective.
机译:目前,太阳能的使用正在迅速增长,太阳能是人类最负担得起的可再生能源。在这方面,需要测试用于收集太阳能的太阳能电池和模块。在实验室中,用于光伏器件测试的条件用于太阳模拟,其模拟参数与太阳辐射非常接近。太阳模拟的基本元素是人造光源。根据ASTM G173-03标准的规定,在AM 1.5G条件下,太阳辐射模拟器的输出光谱应接近波长范围(400-1100 nm)中太阳光的光谱分布。本文的目的是基于ASTM E927-10标准在400 nm – 700 nm范围内确定具有微波激励的无电极无硫硫灯的光谱匹配,该灯被建议用作太阳辐射模拟器的光源。硫灯在可见光范围内具有连续的准辐射光谱,在此范围内,太阳能电池的光谱灵敏度最为有效。

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