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Decarbonisation Strategies in Energy Systems Modelling: APV and e-tractors as Flexibility Assets

  • This work presents an analysis of the impact of introducing Agrophotovoltaic technologies and electric tractors into Germany’s energy system. Agrophotovoltaics involves installing photovoltaic systems in agricultural areas, allowing for dual usage of the land for both energy generation and food production. Electric tractors, which are agricultural machinery powered by electric motors, can alsoThis work presents an analysis of the impact of introducing Agrophotovoltaic technologies and electric tractors into Germany’s energy system. Agrophotovoltaics involves installing photovoltaic systems in agricultural areas, allowing for dual usage of the land for both energy generation and food production. Electric tractors, which are agricultural machinery powered by electric motors, can also function as energy storage units, providing flexibility to the grid. The analysis includes a sensitivity study to understand how the availability of agricultural land influences Agrophotovoltaic investments, followed by the examination of various scenarios that involve converting diesel tractors to electric tractors. These scenarios are based on the current CO2 emission reduction targets set by the German Government, aiming for a 65% reduction below 1990 levels by 2030 and achieving zero emissions by 2045. The results indicate that approximately 3% of available agricultural land is necessary to establish a viable energy mix in Germany. Furthermore, the expansion of electric tractors tends to reduce the overall system costs and enhances the energy-cost-efficiency of Agrophotovoltaic investments.show moreshow less

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Metadaten
Document Type:Master's Thesis
Zitierlink: https://opus.hs-offenburg.de/8062
Bibliografische Angaben
Title (English):Decarbonisation Strategies in Energy Systems Modelling: APV and e-tractors as Flexibility Assets
Author:Lucas Goulart Duarte
Advisor:Niklas Hartmann, Meritxell Domènech Monfort
Year of Publication:2023
Granting Institution:Hochschule Offenburg
Page Number:iv, v, 67
URN:https://urn:nbn:de:bsz:ofb1-opus4-80626
Language:English
Inhaltliche Informationen
Institutes:Fakultät Elektrotechnik, Medizintechnik und Informatik (EMI) (ab 04/2019)
Fakultät Maschinenbau und Verfahrenstechnik (M+V)
Institutes:Abschlussarbeiten / Master-Studiengänge / RED
DDC classes:600 Technik, Medizin, angewandte Wissenschaften
GND Keyword:Elektrofahrzeug; Energiespeicherung; Fotovoltaik; Landwirtschaft
Tag:Agrophotovoltaics; Electric Tractors; Energy System Model; Energy Transition
Formale Angaben
Open Access: Open Access 
 Diamond 
Licence (German):License LogoCreative Commons - CC0 1.0 - Universell - Public Domain Dedication
SWB-ID:1882843789