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Inference of missing data in photovoltaic monitoring datasets

机译:推断光伏监测数据集中的缺失数据

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摘要

Photovoltaic (PV) systems are frequently covered by performance guarantees, which are often based on attaining a certain performance ratio (PR). Climatic and electrical data are collected on site to verify that these guarantees are met or that the systems are working well. However, in-field data acquisition commonly suffers from data loss, sometimes for prolonged periods of time, making this assessment impossible or at the very best introducing significant uncertainties. This study presents a method to mitigate this issue based on back-filling missing data. Typical cases of data loss are considered and a method to infer this is presented and validated. Synthetic performance data is generated based on interpolated environmental data and a trained empirical electrical model. A case study is subsequently used to validate the method. Accuracy of the approach is examined by creating artificial data loss in two closely monitored PV modules. A missing month of energy readings has been replenished, reproducing PR with an average daily and monthly mean bias error of about -1 and -0.02%, respectively, for a crystalline silicon module. The PR is a key property which is required for the warranty verification, and the proposed method yields reliable results in order to achieve this.
机译:光伏(PV)系统通常包含性能保证,这些保证通常基于获得一定的性能比(PR)。现场收集了气候和电力数据,以验证是否满足这些保证或系统运行良好。但是,现场数据采集通常会遭受数据丢失的困扰,有时会持续很长时间,从而使评估无法进行,或者最好情况下会带来很大的不确定性。这项研究提出了一种基于回填缺失数据来缓解此问题的方法。考虑了数据丢失的典型情况,并提出并验证了一种推断这种情况的方法。基于插值环境数据和经过训练的经验电模型生成综合性能数据。随后使用案例研究来验证该方法。通过在两个受密切监视的PV模块中造成人为数据丢失来检查该方法的准确性。补充了一个月缺少的能量读数,从而使PR结晶硅模块的平均每日和每月平均偏差误差分别约为-1和-0.02%。 PR是保修验证所必需的关键属性,因此,提出的方法可得出可靠的结果。

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