Silicon Carbide Semiconductor TechnologiesThermal Analysis in Power TransmissionTurbomachinery Performance and Optimization

Liwei Wang, Buck F. Brown, Matt Ursino, Miles Russell, Shuangshuang Jin, Zheyu Zhang

2026.2.24IEEE Journal of Photovoltaics

DOI: 10.1109/jphotov.2026.3656495

Abstract

The reliability of photovoltaic (PV) inverters is critical for long-term solar system performance, with cooling fan failures frequently leading to costly downtime. While much research exists on general cooling fan reliability, little attention has been given to fans operating within PV inverters and their unique environmental challenges. This article proposes a comprehensive methodology to address this gap. First, a failure mode and effects analysis is performed on fans to identify the key failure mechanisms in PV applications, their corresponding stressors, and the models necessary for lifetime prediction. Second, an accelerated life test is designed and conducted to collect valuable experimental data for PV inverter fans in a reasonable amount of time. Third, a mathematical conversion of dynamic mission profiles into effective constant stress levels is derived. Fourth, case studies are given, showcasing lifetime estimates that account for geographic variations in mission profile data. The results demonstrate that this integrated approach leads to an accurate reliability assessment for PV inverter cooling fans.

Citation format

WANG, Liwei, et al. Reliability assessment of cooling fans for PV inverters: Testing, modeling, and case studies. IEEE Journal of Photovoltaics, 2026, 16(4): 534–541.