Pengembangan Alat Estimasi Pola Peningkatan Kekotoran Panel PV

S. Wibowo, Sigit Setya Wiwaha, Irwan Heryanto, Eryk
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Abstract

Photovoltaic (PV) panels play a pivotal role in converting solar radiation into electrical energy. The efficiency of PV panels is susceptible to the impact of shadows and accumulated dirt on the panel surfaces. This research aims to establish a correlation between the level of dirt accumulation and the resultant power generation. The methodology employed involves a comparative analysis of power output from PV panels under clean and dusty conditions. To quantify the increase in dust over a 3-day data collection period, a glass surface was exposed outdoors to collect dust, serving as a reference for comparison with the PV panel surface. The glass, containing accumulated dust, was then subjected to data retrieval using an LED as a light source. A light intensity sensor (BH1750) was employed to measure the decrease in light intensity as dust coverage increased on the glass surface over time.The results of the PV fouling test, utilizing 10 grams of dust, indicate a relatively stable voltage generation with only a 0.8-volt loss. In contrast, the current generated experienced losses of 0.28 amperes before and after fouling. These losses significantly impact the overall power generation capacity of the PV panel. This research sheds light on the importance of mitigating dust accumulation on PV surfaces to optimize and sustain efficient solar energy conversion.
开发光伏电池板污垢改善模式估算工具
光伏(PV)电池板在将太阳辐射转化为电能方面发挥着举足轻重的作用。光伏电池板的效率很容易受到电池板表面阴影和积垢的影响。本研究旨在建立污垢累积水平与发电量之间的相关性。所采用的方法包括对光伏电池板在清洁和多尘条件下的功率输出进行比较分析。为了量化 3 天数据收集期内灰尘的增加情况,将玻璃表面暴露在室外收集灰尘,作为与光伏板表面进行比较的参照物。然后使用 LED 作为光源,对含有积尘的玻璃进行数据检索。光强传感器(BH1750)用于测量玻璃表面灰尘覆盖率随时间增加而降低的光强。利用 10 克灰尘进行的光伏结垢测试结果表明,产生的电压相对稳定,仅有 0.8 伏特的损耗。相比之下,结垢前后产生的电流损失为 0.28 安培。这些损耗严重影响了光伏电池板的整体发电能力。这项研究揭示了减少光伏表面灰尘积累对优化和维持高效太阳能转换的重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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