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Dive into the research topics where Jonathan Leloux is active.

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Featured researches published by Jonathan Leloux.


31st European Photovoltaic Solar Energy Conference and Exhibition | 31st European Photovoltaic Solar Energy Conference and Exhibition | 14/09/2014 - 18/09/2014 | Hamburg, Germany | 2015

Monitoring 30,000 PV Systems in Europe: Performance, Faults, and State of the Art

Adrien Desportes; David Trebosc; L. Narvarte Fernández; R. Moreton Villagrá; J. Taylor; Jonathan Leloux

We have tried to cast some light on some of the numerous questions concerning the performance of solar PV systems in Europe. We have based our analysis on the operational data monitored at more than 31,000 PV systems in Europe. These installations comprise residential and commercial rooftop PV systems distributed over 9 different countries, including multi-megawatt PV plants installed in the South of Europe. The PV systems were installed between 2006 and 2014. The mean Energy Yield of the PV systems located in the four reference countries are 1115 kWh/kWp for France, 898 kWh/kWp for the UK, 908 kWh/kWp for Belgium, 1450 kWh/kWp for the PV plants in Spain mounted on a static structure, and 2127 kWh/kWp for those mounted on a solar tracker in Spain. We suggest that the typical PR value for the PV systems installed in 2015 is 0.81. We have observed that the performance of the PV systems tends to increase when the peak power of the PV systems increases. We have found significant performance differences as a function of the inverter manufacturer, and the PV module manufacturer and technology. We have found an improvement of the state-of-the-art, in the form of an increase in performance in the yearly integrated PR of around 3 to 4% over the last seven years, which represents an increase of about 0.5% per year.


arXiv: Space Physics | 2014

A free real-time hourly tilted solar irradiation data Website for Europe

Jonathan Leloux; Luis Narvarte; Loreto Gonzalez-Bonilla

The engineering of solar power applications, such as photovoltaic energy (PV) or thermal solar energy requires the knowledge of the solar resource available for the solar energy system. This solar resource is generally obtained from datasets, and is either measured by ground-stations, through the use of pyranometers, or by satellites. The solar irradiation data are generally not free, and their cost can be high, in particular if high temporal resolution is required, such as hourly data. In this work, we present an alternative method to provide free hourly global solar tilted irradiation data for the whole European territory through a web platform. The method that we have developed generates solar irradiation data from a combination of clear-sky simulations and weather conditions data. The results are publicly available for free through Soweda, a Web interface. To our knowledge, this is the first time that hourly solar irradiance data are made available online, in real-time, and for free, to the public. The accuracy of these data is not suitable for applications that require high data accuracy, but can be very useful for other applications that only require a rough estimate of solar irradiation.


arXiv: Other Computer Science | 2014

3D simulation of complex shading affecting PV systems taking benefit from the power of graphics cards developed for the video game industry

Jesus Robledo; Jonathan Leloux; Eduardo Lorenzo

Shading reduces the power output of a photovoltaic (PV) system. The design engineering of PV systems requires modeling and evaluating shading losses. Some PV systems are affected by complex shading scenes whose resulting PV energy losses are very difficult to evaluate with current modeling tools. Several specialized PV design and simulation software include the possibility to evaluate shading losses. They generally possess a Graphical User Interface (GUI) through which the user can draw a 3D shading scene, and then evaluate its corresponding PV energy losses. The complexity of the objects that these tools can handle is relatively limited. We have created a software solution, 3DPV, which allows evaluating the energy losses induced by complex 3D scenes on PV generators. The 3D objects can be imported from specialized 3D modeling software or from a 3D object library. The shadows cast by this 3D scene on the PV generator are then directly evaluated from the Graphics Processing Unit (GPU). Thanks to the recent development of GPUs for the video game industry, the shadows can be evaluated with a very high spatial resolution that reaches well beyond the PV cell level, in very short calculation times. A PV simulation model then translates the geometrical shading into PV energy output losses. 3DPV has been implemented using WebGL, which allows it to run directly from a Web browser, without requiring any local installation from the user. This also allows taken full benefits from the information already available from Internet, such as the 3D object libraries. This contribution describes, step by step, the method that allows 3DPV to evaluate the PV energy losses caused by complex shading. We then illustrate the results of this methodology to several application cases that are encountered in the world of PV systems design.


photovoltaic specialists conference | 2009

NACIR: A new project on CPV'S funded by the European comission under 7THFP

Gabriel Sala; Dolores Pachón; Jonathan Leloux; Marta Victoria; Andreas W. Bett; Pedro Banda; Andreas Gombert; Vicente Diaz; Miguel Angel Vazquez; Abdelhaquim El Moussaoui; Fuad Abulfotuh

The European Commission has subsidized the Project NACIR on CPVs for the next four years beginning on 1st January 2009. The main goal of this project is to join together the owners of the most advanced European CPV technology12, with respect to the state of the art, in order to research from their leading position new applications for CPV systems. In addition to opening up new markets, this research will unveil possible sources of failure in new environments outside Europe, in order to assure component reliability.


Applied Energy | 2014

A bankable method of assessing the performance of a CPV plant

Jonathan Leloux; Eduardo Lorenzo; Beatriz García-Domingo; J. Aguilera; Christian A. Gueymard


world conference on photovoltaic energy conversion | 2011

Performance Analysis of 10,000 Residential PV Systems in France and Belgium

Jonathan Leloux; Luis Narvarte Fernández; David Trebosc


arXiv: Data Analysis, Statistics and Probability | 2014

Automatic fault detection on BIPV systems without solar irradiation data

Jonathan Leloux; Luis Narvarte; Alberto Luna; Adrien Desportes


world conference on photovoltaic energy conversion | 2013

AUTOMATIC DETECTION OF PV SYSTEMS FAILURES FROM MONITORING VALIDATED ON 10,000 BIPV SYSTEMS IN EUROPE

Jonathan Leloux; Luis Narvarte; Alberto Luna; Adrien Desportes


world conference on photovoltaic energy conversion | 2013

A BANKABLE METHOD FOR THE FIELD TESTING OF A CPV PLANT

Jonathan Leloux; Eduardo Lorenzo; Beatriz García; J. Aguilera; R. Moretón


Renewable Energy | 2018

Solar irradiation from the energy production of residential PV systems

C. Bertrand; Caroline Housmans; Jonathan Leloux; Michel Journée

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Dolores Pachón

Technical University of Madrid

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Gabriel Sala

Technical University of Madrid

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L. Narvarte

Technical University of Madrid

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Marta Victoria

Technical University of Madrid

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R. Moretón

Technical University of Madrid

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