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首页> 外文期刊>Energies >Modeling and Experimental Validation of a Low-Cost Radiation Sensor Based on the Photovoltaic Effect for Building Applications
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Modeling and Experimental Validation of a Low-Cost Radiation Sensor Based on the Photovoltaic Effect for Building Applications

机译:基于光伏效应的低成本辐射传感器的建模与实验验证

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The energy consumed to cool buildings is very elevated and solar gains represent a high percentage of these cooling loads. To minimize the thermal load it is necessary to control external shading systems. This control requires continuous measurement of solar radiation in different locations of the building. However, for such applications the use of conventional irradiance sensors increases the cost and reduces the profitability of the installation. This paper is focused on the development, modeling, and experimental validation of low cost irradiation sensors based on photovoltaic effect in order to reduce the costs of dynamic external shading devices and to improve the profitability of the system. With this proposal, firstly, small commercial photovoltaic cells have been adapted for use as an irradiation measurement device. Subsequently, quasi-stationary and continuous experimental measurements of these silicon cells, facing south and installed horizontally, have been carried out in Jaén (Spain) in 2009 and 2010. Finally, a nonlinear multiparameter function has been developed to evaluate the irradiance using the electric current generated by the cell, cell temperature, ambient temperature, and absolute humidity. A favorable agreement between the model predictions and experimental data has been observed with a coefficient of determination around 0.996 for all cells.
机译:冷却建筑物所消耗的能量非常高,而太阳能收益占这些冷却负荷的很大一部分。为了最小化热负荷,必须控制外部遮阳系统。这种控制要求连续测量建筑物不同位置的太阳辐射。但是,对于此类应用,使用常规的辐照度传感器会增加成本并降低设备的盈利能力。本文致力于基于光电效应的低成本辐照传感器的开发,建模和实验验证,以降低动态外部遮光设备的成本并提高系统的盈利能力。有了这个建议,首先,小型商用光伏电池已经适合用作辐照测量设备。随后,于2009年和2010年在哈恩(西班牙)对这些朝南并水平安装的硅电池进行了准平稳和连续的实验测量。最后,开发了非线性多参数函数以利用电来评估辐照度电池产生的电流,电池温度,环境温度和绝对湿度。已经观察到模型预测与实验数据之间的有利一致性,所有细胞的测定系数约为0.996。

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