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首页> 外文期刊>Journal of Architectural Engineering >Experimental Evaluation of Solar Radiation and Solar Efficacy Models and Performance of Data-Driven Models
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Experimental Evaluation of Solar Radiation and Solar Efficacy Models and Performance of Data-Driven Models

机译:太阳辐射和太阳能效能模型的实验评价及数据驱动模型的性能

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摘要

Weather data are major input for building energy usage predictions. However, solar-radiation-related historical and real-time weather data are unavailable or incomplete in many locations. Therefore, many models, which use more available weather parameters to predict solar radiation's components, were developed in the last 30 years. An experimental evaluation of these models is needed since measurement devices and satellite techniques are improved, and weather files are consequently updated. In this study, we review, calibrate, and validate the accuracy of global and diffuse irradiation prediction models and efficacy models using experimental data over an 18-month data collection period in Taipei, Taiwan, and Kingsville, Texas. The evaluation also covers data-driven models such as neural networks. The results show that the SUNY model provides good solar irradiance estimations; Perez and Muneer efficacy models provide good daylight illuminance estimations; and Erbs, Muneer, Reindl, and Perez models have similar accuracy but different error trends when separating direct and diffuse irradiance. The results can be used as a guideline when filling in solar-radiation-related fields.
机译:天气数据是建立能源使用预测的主要投入。但是,在许多地方,太阳能辐射相关的历史和实时天气数据是不可用或不完整的。因此,在过去30年中开发了许多使用更多可用天气参数来预测太阳辐射组件的型号。需要对这些模型进行实验评估,因为测量设备和卫星技术得到改善,因此更新了天气文件。在这项研究中,我们通过在台北,台湾,金斯维尔,德克萨斯州德克萨斯州的一个18个月的数据收集期间审查,校准和验证全球和漫射辐射预测模型和疗效模型的准确性。评估还涵盖了数据驱动的模型,如神经网络。结果表明,SUNY模型提供了良好的太阳辐照度估算; Perez和Muneer疗效模型提供了良好的日光照度估算;和ERBS,Muneer,Reindl和Perez模型具有类似的准确性,但在分离直接和漫射辐照度时的误差趋势不同。结果可以用作填充太阳辐射相关领域的指导。

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