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System performance analysis and estimation of degradation rates based on 500 years of monitoring data

机译:基于500年的监测数据的系统性能分析和退化率估算

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Fraunhofer ISE has been involved in monitoring of PV systems since the “1000-roofs-program” in the 1990s. In a few of these “old systems” equipment is still in place, metering PV electricity output and plane-of-array irradiation. The majority of ∼300 PV power plants in our monitoring campaign today, however, is large-scale and built in the past 10 years. In this paper, we briefly review the historical development of the Performance Ratio (PR) and how average PR for newly built systems increased to almost 90%. This rather high PR of 90% only holds, however, if calculated by on-site irradiation acquired with c-Si reference cells and for climates comparable with those in Germany. Next, we use about 500 years of monitoring data on aggregate to perform an analysis of variations of the PR over time. To this end, data points at similar environmental conditions are extracted from long-term time series as to calculate so-called “rates-of-change” of the PR. Highly scattered “rates-of-change” are obtained, however, not allowing for the estimation of specific degradation rates on the system level yet. To this end, we finally revisit uncertainties of irradiance sensors and in particular revisit our irradiance sensor re-calibration data.
机译:自1990年代的“ 1000屋顶计划”以来,Fraunhofer ISE便开始参与光伏系统的监控。在其中一些“旧系统”设备中,仍然存在着一些设备,它们可以测量光伏电力输出和阵列辐射。然而,在我们今天的监测活动中,约有300座光伏电站中的大多数都是大型的,并在过去10年内建成。在本文中,我们简要回顾了性能比率(PR)的历史发展以及新建系统的平均PR如何增加到近90%。但是,如果通过c-Si参考电池获得的现场辐射以及与德国可比的气候条件下的辐射计算得出,则90%的较高PR才成立。接下来,我们使用大约500年的总体监测数据来进行PR随时间变化的分析。为此,从长期时间序列中提取相似环境条件下的数据点,以计算PR的所谓“变化率”。但是,获得了高度分散的“变化率”,但尚无法在系统级别上估计特定的退化率。为此,我们最终将重新审视辐照度传感器的不确定性,尤其是重新审视辐照度传感器的重新校准数据。

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