Novel Utility-Scale Photovoltaic Plant Electroluminescence Maintenance Technique by Means of Bidirectional Power Inverter Controller

Author:

Ballestín-Fuertes JavierORCID,Muñoz-Cruzado-Alba JesúsORCID,Sanz-Osorio José F.,Hernández-Callejo LuisORCID,Alonso-Gómez VictorORCID,Morales-Aragones José Ignacio,Gallardo-Saavedra SaraORCID,Martínez-Sacristan Oscar,Moretón-Fernández ÁngelORCID

Abstract

Nowadays, photovoltaic (PV) silicon plants dominate the growth in renewable energies generation. Utility-scale photovoltaic plants (USPVPs) have increased exponentially in size and power in the last decade and, therefore, it is crucial to develop optimum maintenance techniques. One of the most promising maintenance techniques is the study of electroluminescence (EL) images as a complement of infrared thermography (IRT) analysis. However, its high cost has prevented its use regularly up to date. This paper proposes a maintenance methodology to perform on-site EL inspections as efficiently as possible. First, current USPVP characteristics and the requirements to apply EL on them are studied. Next, an increase over the automation level by means of adding automatic elements in the current PV plant design is studied. The new elements and their configuration are explained, and a control strategy for applying this technique on large photovoltaic plants is developed. With the aim of getting on-site EL images on a real plant, a PV inverter has been developed to validate the proposed methodology on a small-scale solar plant. Both the electrical parameters measured during the tests and the images taken have been analysed. Finally, the implementation cost of the solution has been calculated and optimised. The results conclude the technical viability to perform on-site EL inspections on PV plants without the need to measure and analyse the panel defects out of the PV installation.

Publisher

MDPI AG

Subject

Fluid Flow and Transfer Processes,Computer Science Applications,Process Chemistry and Technology,General Engineering,Instrumentation,General Materials Science

Reference76 articles.

1. Renewable energy strategies for Europe

2. U targets: More Renewables, Better Energy Efficiency (Video)https://www.europarl.europa.eu/news/en/headlines/economy/20181031STO18175/eu-targets-more-renewables-better-energy-efficiency-video

3. The European Power Sector in 2017. State of Affairs and Review of Current Developments,2018

4. Energy Information Administration

5. Renewable Power Generation Costs in 2018,2019

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