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AN INTERNATIONAL SOLAR IRRADIANCE DATA INGEST SYSTEM FOR FORECASTING SOLAR POWER AND AGRICULTURAL CROP YIELDS

机译:预测太阳能和农作物产量的国际太阳能辐照数据输入系统

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A data system has been developed for the real-time ingest of solar irradiance and climate data from thousands of ground-based measurement sites. Compared to space-based sensing of solar radiation, ground sensors can offer advantages in terms of accuracy and latency. The system is currently focused on the United States and the European Union, with data from other countries to be included in the future. It currently provides historical data for accurate solar resource assessment, real-time data for solar power forecast models, and data inputs for agricultural crop yield models. This ingest is unique in terms of the number of sites providing irradiance data, and the international scope of the project. Outputs include continuous gridded and point global horizontal irradiance data for the day, continuous irradiance forecasts for the next four hours, and historical summaries of solar and climate data. The system archives the observations and includes routines to back-fill data that could not be obtained in real-time. Additionally the system monitors each sensor by analyzing the time history of observations, comparing measurements from nearby sites, and checking observations against theoretical solar envelopes. Constructing a real-time ingest of ground-based data presented unique challenges such as asynchronous data availability, missing or delayed data, uncertainty about sensor maintenance and calibration, and the need to access many different networks with different data formats. This paper describes the methodology for addressing each of these problems and the current system performance.
机译:已经开发了一种数据系统,用于实时获取来自数千个地面测量站点的太阳辐照度和气候数据。与基于空间的太阳辐射感测相比,​​地面传感器在准确性和等待时间方面可以提供优势。该系统当前集中于美国和欧盟,未来还将包括来自其他国家的数据。它目前提供用于准确评估太阳能资源的历史数据,用于太阳能发电预测模型的实时数据以及用于农作物产量模型的数据输入。就提供辐照度数据的站点数量以及项目的国际范围而言,这种摄取是独特的。输出包括当天的连续网格和点全球水平辐照度数据,接下来四个小时的连续辐照度预测以及太阳和气候数据的历史摘要。该系统将观察结果存档,并包括例程以回填无法实时获取的数据。另外,该系统通过分析观测值的时间历史记录,比较附近站点的测量值以及根据理论太阳包络检查观测值来监视每个传感器。实时获取地面数据会带来独特的挑战,例如异步数据可用性,数据丢失或延迟,传感器维护和校准的不确定性以及访问具有不同数据格式的许多不同网络的需求。本文介绍了解决这些问题以及当前系统性能的方法。

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