In-Situ Self-Monitoring of Real-Time Photovoltaic Degradation Only Using Maximum Power Point: the Suns-Vmp Method
Xingshu Sun, Raghu Vamsi Krishna Chavali, and Muhammad Ashraful Alam

TL;DR
The paper introduces the Suns-Vmp method, a novel approach that uses maximum power point data to monitor and diagnose degradation in photovoltaic modules, enabling real-time health assessment without extensive additional measurements.
Contribution
It presents a physics-based, data-driven methodology that reconstructs IV curves from MPP data to identify degradation modes in solar modules, improving existing diagnostic capabilities.
Findings
Degradation rate of 0.7% per year due to discoloration and solder bond weakening.
Method validated with NREL data and independent imaging characterization.
Potential to predict PV system lifetime when integrated with models or machine learning.
Abstract
The uncertainties associated with technology- and geography-specific degradation rates make it difficult to calculate the levelized cost of energy (LCOE), and thus the economic viability of solar energy. In this regard, millions of fielded photovoltaic (PV) modules may serve as a global testbed, where we can interpret the routinely collected maximum power point (MPP) time-series data to assess the time-dependent "health" thereof. The existing characterization methods, however, cannot effectively mine/decode these datasets to identify various degradation pathways of the corresponding solar modules. In this paper, we propose a new methodology, i.e., the Suns-Vmp method, which offers a simple and powerful approach to monitoring and diagnosing time-dependent degradation of solar modules by physically mining the MPP data. The algorithm reconstructs "IV" curves by using the natural…
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Taxonomy
TopicsPhotovoltaic System Optimization Techniques · solar cell performance optimization · Silicon and Solar Cell Technologies
