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                  <mods:namePart>Heredia-Larrubia, Juan Ramón</mods:namePart>
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                  <mods:namePart>Sidrach-de-Cardona-Ortin, Mariano</mods:namePart>
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               <mods:identifier type="citation">Merino, S.; Martinez, J.; Guzman, F.; Lara, J.d.D.; Guzman, R.; Sanchez, F.; Heredia, J.R.; Sidrach de Cardona, M. Dynamic Reconfiguration to Optimize Energy Production on Moving Photovoltaic Panels. Sustainability 2023, 15, 10858.</mods:identifier>
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               <mods:abstract>Urban transport systems play a major role in the development of today’s societies, but they&#xd;
require technological changes to reduce their environmental impact. The problem lies in their level of&#xd;
autonomy, which is why electrical energy production systems are proposed for self-consumption,&#xd;
efficiently feeding their accumulators. As the energy provided by photovoltaic installations has lower&#xd;
recharge speeds, conventional systems with high transfer amperage and higher voltage are required.&#xd;
For this reason, solar installations are used for additional services and to support their autonomy.&#xd;
The present work tries to find the best solution for both constant voltage and peak current systems.&#xd;
Once found, these solutions will be applied in real time for the dynamic recharging of battery packs,&#xd;
trying to achieve vehicles that are progressively more energetically autonomous. To solve these&#xd;
situations, a new computational method for calculating voltage and amperage has been developed in&#xd;
this work, based on Dijkstra’s minimum path search algorithm on graph theory, adapted to electrical&#xd;
circuits. Once this algorithm has been established, the panel performance analysis sensors, developed&#xd;
at the University of Malaga, are combined with different electronic solutions described in this article&#xd;
(Wi-Fi relay devices using esp8266 chips or feeding these relays through panels and establishing the&#xd;
voltage drop to switch the connection), achieving precise and sufficiently fast solutions at very low&#xd;
cost. Both series and parallel transitions are possible, depending on the type of energy generation&#xd;
required. The theoretical solutions using Minkowski paths, analyzed in the past, have been simulated&#xd;
and subsequently constructed in this paper, indicating the diagrams necessary for their realization.</mods:abstract>
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               <mods:accessCondition type="useAndReproduction">Atribución 4.0 Internacional</mods:accessCondition>
               <mods:subject>
                  <mods:topic>Células fotovoltaicas</mods:topic>
               </mods:subject>
               <mods:subject>
                  <mods:topic>Energía fotovoltaica - Generación</mods:topic>
               </mods:subject>
               <mods:titleInfo>
                  <mods:title>Dynamic reconfiguration to optimize energy production on moving photovoltaic panels.</mods:title>
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