Impact of partial shading on the performance and reliability of potential-induced degraded crystalline silicon PV module

底纹 可靠性(半导体) 晶体硅 可靠性工程 材料科学 光伏系统 光电子学 降级(电信) 计算机科学 电子工程 功率(物理) 电气工程 工程物理 工程类 物理 计算机图形学(图像) 热力学
作者
Sundararajan Asokan,Ravi Kumar,Vishal E. Puranik,Rajesh Gupta
出处
期刊:Journal of Renewable and Sustainable Energy [American Institute of Physics]
卷期号:16 (4)
标识
DOI:10.1063/5.0209869
摘要

Potential-induced degradation shunting (PID-s) is a severe degradation mechanism that significantly impacts the performance and lifespan of photovoltaic (PV) modules. The impact of PID-s is further intensified when it coincides with partial shading. Despite its significance, limited research has been focused on the combined impact of PID-s and partial shading. Therefore, this work analyzes the impact of partial shading on the performance and reliability of PID-s-affected PV module. In the literature, PID-s is reported with two natures: Ohmic and non-Ohmic. This work considers the nature and severity of PID-s in the presented investigation. Results indicate that when an Ohmic PID-s-affected PV cell is shaded in a module, it results in less power loss than when a healthy cell is shaded, but it induces a significantly high reverse current through the PID-s-affected cell. With severity, the impact of Ohmic PID-s under shading decreases. In the case of non-Ohmic PID-s, severity does not impact the performance significantly; however, shading of a non-Ohmic PID-s affected cell is more severe than Ohmic PID-s until the PID-s threshold is reached. Furthermore, bypass diode activation is delayed in both types of PID-s compared to shading on healthy cells. Overall, these findings emphasize the significance of optimizing shading strategies and mitigating PID-s effects to enhance the performance and reliability of photovoltaics. This research provides valuable insights for industry stakeholders involved in PV installation and maintenance operations.
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