
ABO Energy GmbH & Co. KGaA is a German energy company which develops renewable energy sources (wind and solar energy, battery storage, and hydrogen). ABO Energy has international offices in France, Finland, Poland, Tanzania, UK, Ireland, Spain, Greece, Hungary, Argentina, Canada, Colombia, South Africa, Tunisia and the Netherlands. In Germany, ABO Energy operate. . Die ABO Energy GmbH & Co. KGaA ist ein Projektentwicklungsunternehmen für Anlagen der Energieversorgung aus (Wind-, Sonnenenergie, Batteriespeicher und Wasserstoff) mit Sitz in . [pdf]
For about 30 years, ABO Energy's in-house specialist departments have been providing all steps of project development and implementation: from site assessment, planning, engineering, permitting and financing to construction, grid connection, operational management and maintenance.
ABO Energy | 38,134 followers on LinkedIn. Renewables are our DNA. | Founded in 1996, ABO Energy (fomerly known as ABO Wind) is among Europe’s leading developers of renewable energy projects.
ABO Energy realises projects with a total annual investment of about 500 million euros. To date, ABO Energy has realised projects with a total capacity of about 6 gigawatts and constructed around half of these. We are looking for smart, creative and decisive minds, who are excited about the opportunities and prospects of renewable energies.
In 2024, six people make up ABO Energy’s Management Board: Dr. Karsten Schlageter, Dr. Jochen Ahn, Matthias Hollmann, Susanne von Mutius, Alexander Reinicke and Dr. Thomas Treiling.
In February 2023, ABO Energy formed an agreement with Repsol Renovables for five renewable energy projects, including three wind farms amounting to 150 megwatts, and two solar projects with a total capacity of 100 megawatts on sites in Palencia in northern Spain.
Currently, the company is active in 16 countries on four continents. In Germany, ABO Energy operates at its corporate headquarters in Wiesbaden as well as in Ingelheim and in regional offices in Berlin, Rhineland-Palatinate, Lower Saxony, North Rhine-Westphalia, Thuringia, Bavaria, Mecklenburg-Vorpommern as well as in Saarland.

Today, particular attention is being globally paid towards clean and sustainable energy system. The rapid development in renewable energy technologies, growth of energy markets, and adopted financial strate. . ••A systematic framework for the optimal design of hybrid energy systems is p. . In recent decades, increasing people populations and higher technology evolution causes rapid growth in electrical energy demand. Total energy demand is expected to incre. . In order to obtain the optimal design of HRES and adequately evaluate the system performance, firstly a generic and integrated framework is developed as a decision-support. . To demonstrate the proposed framework for HRES planning design optimization, the data of specific agriculture and irrigation area in Dongola, Sudan were acquired and presented. First,. . 4.1. Techno-economic optimized results of the developed hybrid renewable energy system for DongolaBy integrating different input parameters with the involved. [pdf]
HOMER simulation results demonstrated that the optimal type of PV for Sudan is the Studer VarioTrack VT-65 with Generic PV. The utilization of a solar PV system will avoid the production of approximately 27 million kg/year of pollutants and will reduce the cost of energy to USD$ 0.08746/kWh.
Situated in the sunbelt, Sudan is one of the largest countries in Africa endowed with an extremely high solar irradiation potential. However, no work has been done in the literature with a strategic context to study specifically the feasibility of renewable energy systems in Sudan despite the abundance of solar resource.
The optimal locations found in Sudan for utilizing solar energy were Wawa, followed by Kutum, Wadi Halfa, Dongola and Al-Goled due to their low costs of electricity, high clearness index and high levels of solar radiation.
Given that Sudan is endowed with an extremely high solar irradiation potential, the government has set a target of achieving a 667 MW of PV installed capacity by the end of 2031 (Murdock et al. 2019). This clearly reflects that the latter technology will play a key role in adjusting the electricity crisis of Sudan in the near future.
The first phase of the project has been already completed with a successful reclamation of around 400 Hectare, where the existing electrical energy system is isolated from the national grid of Sudan and consisted from one standalone diesel generator, which is denoted by DG1 in this study.
The two maps demonstrate the distribution of average solar radiation and average wind speed over Sudan, whereas the average values of solar radiation and wind speed recorded around 6.5 kWh/m 2 /day and 6.0 m/s, respectively, thus they are measured as among the highest values in the world. Fig. 8.

Energy is an essential commodity. Rapidly increasing populations and economic growth are causing global energy demand to increase, especially in emerging-market economies. Energy supply is interwoven with gl. . Traditionally, energy from biomass has dominated the domestic energy supply for most people in. . 2.1 Solar energySolar energy is by far the largest and most sustainable energy resource in Nepal. The solar resource is two orders of magnitude larger than Nepa. . Balancing high levels of variable solar energy over every hour of every year is straightforward. Storage via batteries and pumped hydro allows the daily solar cycle to be accommod. . Government energy roadmaps in many countries are being overtaken and rendered obsolete by a sustained rapid decline in the cost of solar energy and sustained rapid growth in solar-e. . Nepal has good solar resources by world standards and moderate hydro resources, but negligible wind- and fossil-energy resources. The solar-energy resource is two orders of ma. [pdf]
We are deeply committed to excellence in all our endeavors.
Since we maintain control over our products, our customers can be assured of nothing but the best quality at all times.