论文标题

光学污染检测器“ DUSST”的设计,表征和室内验证

Design, characterization and indoor validation of the optical soiling detector "DUSST"

论文作者

Fernández-Solas, Álvaro, Micheli, Leonardo, Muller, Matthew, Almonacid, Florencia, Fernández, Eduardo F.

论文摘要

如今,与其他能源技术相比,光伏(PV)技术在模块效率和成本竞争力方面已经达到了很高的成熟度。随着PV的高水平部署,可以帮助降低PV运行和维护成本的设备的开发已成为当务之急。弄脏可能是某些光伏植物造成的巨大损失,并且其检测对于确保正确缓解的必不可少。因此,需要准确和低成本的监视设备。尽管传统上已经使用了脏台来衡量污垢的影响,但它们的高成本和维护导致了创新的低成本光学传感器的发展,例如这项工作中提出的设备并被称为“ Dusst”(用于污染光谱传播的探测器单元)。本研究介绍了DUSST组成部分的热表征和用于预测污染透射率损失的方法。结果表明,可以预测损失的误差低于1.4%。该方法已通过实验活动进行了验证,并在西班牙贾恩(Jaén)的户外露出了自然弄脏的优惠券。

Nowadays, photovoltaic (PV) technology has reached a high level of maturity in terms of module efficiency and cost competitiveness in comparison with other energy technologies. As PV has achieved high levels of deployment, the development of devices that can help to reduce PV operation and maintenance costs has become a priority. Soiling can be cause of significant losses in certain PV plants and its detection has become essential to ensure a correct mitigation. For this reason, accurate and low-cost monitoring devices are needed. While soiling stations have been traditionally employed to measure the impact of soiling, their high cost and maintenance have led to the development of innovative low-cost optical sensors, such as the device presented in this work and named "DUSST" (Detector Unit for Soiling Spectral Transmittance). The thermal characterization of the components of DUSST and the methodology used to predict soiling transmittance losses are presented in this study. The results show that the losses can be predicted with an error lower than 1.4%. The method has been verified with an experimental campaign with naturally soiled coupons exposed outdoors in Jaén, Spain.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源