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Home/Company/Partnerships/Scientific Advisory & Project Board (SAPB)

Scientific Advisory & Project Board (SAPB)

Why a Scientific Advisory Project Board

50Hertz is pursuing a clear climate and industrial policy goal: by 2032, we want to cover 100 percent of the electricity demand in our grid area with renewable energies - affordably and sustainably. Practitioners need research when it comes to shaping the future together and to developing new approaches and solutions. The SAPB gives 50Hertz direct access to research - and it offers academic institutes the opportunity to put their research results into practice very quickly.

The professors of the SAPB research and teach in the fields of electrical engineering, grid planning, system management, energy market and system modelling, energy economics and resource economics, energy law and digitalization. With their expertise, they cover a wide range of topics that are highly relevant for a progressive transmission system operator.

How the SAPB works

For 50Hertz, scientific studies are an essential part of gaining knowledge in shaping our future. Since 2020, members of the SAPB have investigated a range of issues for us (see below). SAPB members also support other externally commissioned studies.

Semi-annual meetings ensure a regular exchange between the entire SAPB network and representatives from all relevant areas of 50Hertz and ensure that the continued dialog between research and practice.

Common Studies

Foto von Zbynek Burival auf Unsplash/iStock.com/AvigatorPhotographer

Green base load for the industry

Rising energy prices and pressure from customers to switch to CO2-neutral supply chains are leading to an increased need for transformation in the industry towards CO2-neutral production. Part of this production chain is a reliable and cost-effective power supply. However, there is currently a lack of concepts and suitable products on the energy market for a round-the-clock supply of 100 percent renewable energy.

The preliminary study 'Green base load capacity for the industry' has developed a rough concept for a 24/7 real-time supply of energy-intensive industries exclusively with renewable energies.

Foto von Fernand-de-Canne auf Unsplash

Economic benefits of tapping energy flexibility potential in industry and the tertiary sector

Tapping into new potentials for flexibility is a key component of an efficient electricity system. Studies on the development of climate-neutral energy systems confirm that the potential of several gigawatts should be tapped as early as 2030 through the flexibilization of industrial processes, the construction of new storage and electrolysis plants and the flexible use of heat pumps and electric vehicles. The economic exploitation of the potential has so far been low, partly as a result of insufficient price signals from the market.

The study aims to show how high the economic benefits of industrial flexibility are compared to the development costs and which sectors have the most promising flexibility potential.

iStock.com/jeffadl

Market-based procurement of services for black start capability

The conversion of the electrical energy system also requires adapted grid reconstruction concepts from the grid operators. Regional characteristics play an important role here. The research project focused on how the planned market-based procurement of black start capability can meet the requirements of the future.

The study evaluated how new solutions and technologies for grid restoration can be implemented as part of a transparent and non-discriminatory tender for black start capability.

iStock.com/byakkaya

New approach for quickly estimating future electricity transport requirements

New geopolitical constellations can fundamentally change decades of certainty overnight. The instruments for detailed and efficient planning of energy grids are hardly prepared for such upheavals. Instead, the aim must be to be able to anticipate future electricity transportation requirements even more flexibly and, above all, at an earlier stage.

The research project focused on developing a new approach to quickly and specifically estimate future electricity transport requirements, taking into account the entire range of possible energy system developments.

Members

Scientists from German, Austrian and Swiss research institutions are represented on the Board. The Board meets twice a year to discuss current topics and projects. The first meeting took place in spring 2021.

Prof. Dr.-Ing. Martin Braun

University of Kassel

Chair for Energy Management and Power System Operation


Director Fraunhofer IEE, Fraunhofer Institute for Energy Economics and Energy System Technology

Director Grid Planning and Grid Operation Division

  • TO INSTITUTE-WEBSITE

Prof. Dr. Thomas Bruckner 

Leipzig University – Faculty of Economics and Management Sciences
Institute for Infrastructure and Resource Management

  • TO INSTITUTE-WEBSITE

Dr. Manfred Fischedick

Wuppertal Institute for Climate, Environment and Energy

  • TO INSTITUTE-WEBSITE

Prof. Dr. Martin Geidl

University of Applied Sciences and Arts Northwestern Switzerland


Head of Institute of Electric Power Systems

  • TO INSTITUTE-WEBSITE

Prof. Dr. Veronika Grimm

University of Technology Nuremberg


Professor for Energy Systems and Market Design

  • TO INSTITUTE-WEBSITE

Prof. Dr.-Ing. Ines Hauer

TU Clausthal – Institute of Electrical Power Engineering and Energy Systems


Chair of Electrical Energy Storage Technology

  • ZUR INSTITUTS-WEBSITE

Prof. Dr. Lion Hirth

Hertie School – Centre for Sustainability


Professor of Energy Policy

  • ZUR INSTITUTS-WEBSITE
Prof. Dr.-Ing. Martin Kaltschmitt

Prof. Dr.-Ing.
Martin Kaltschmitt 


Hamburg University of Technology 


Institute of Environmental Technology and Energy Economics


  • TO INSTITUTE-WEBSITE

Univ.-Prof. Dipl.-Ing. Dr.sc.techn. Bernd Klöckl

Vienna University of Technology


Research Unit of Energy Systems and Networks

  • TO INSTITUTE-WEBSITE

Prof. Dr.-Ing. Sascha Kosleck

University of Rostock – Faculty of Mechanical Engineering and Marine Technology


Chair of Ocean Engineering

  • TO INSTITUTE-WEBSITE

Prof. Dr. Andreas Löschel

Ruhr-University Bochum


Professor of Environmental/Resource Economics and Sustainability

  • TO INSTITUTE-WEBSITE

Dr. Felix Chr. Matthes

Oeko-Institut – Institute for Applied Ecology


Research Coordinator Energy and Climate Policy

  • TO INSTITUTE-WEBSITE

Univ.-Prof. Dr.-Ing. Albert Moser

Institute for High Voltage Equipment and Grids, Digitalization and Energy Economics

RWTH Aachen University

  • TO INSTITUTE-WEBSITE

Prof. Dr. Felix Müsgens

Brandenburg University of Technology


Professor of Energy Economics

  • TO INSTITUTE-WEBSITE

Prof. Dr.-Ing. Ronald Plath

TU Berlin

Electrical Engineering and Computer Science
Energy and Automation Technology

Department High Voltage Engineering


Professor and Head of Department

  • TO INSTITUTE-WEBSITE

Prof. Dr. Barbara Praetorius

HTW Berlin / University of Applied Sciences


Professor for Sustainability, Environmental and Energy Economics

  • TO INSTITUTE-WEBSITE

Prof. Dr. Mario Ragwitz

Fraunhofer IEG


Director Fraunhofer Research Institution for Energy Infrastructures and Geothermal Systems IEG

  • TO INSTITUTE-WEBSITE

Dr. Simon Schäfer-Stradowsky

Institute for Climate Protection, Energy and Mobility (IKEM)

  • ZUR INSTITUTS-WEBSITE

Prof. Dr.-Ing. Peter Schegner

TU Dresden


Institute of Electrical Power Systems and High Voltage Engineering 


Professor for Electrical Power Systems

Head of Institute

  • TO INSTITUTE-WEBSITE

Prof. Dr.-Ing. Kai Strunz

TU Berlin

Chair of Sustainable Electric Networks and Sources of Energy (SENSE)

  • TO INSTITUTE-WEBSITE

Prof. Dr. Jens Strüker

University of Bayreuth, Director FIM Forschungsinstitut für Informationsmanagement

 (Research Institute for Information Management)


Co-chair Project Group Business & Information Systems Engineering of the Fraunhofer FIT

  • TO INSTITUTE-WEBSITE
Prof. Dr.-Ing. Dirk Westermann

Prof. Dr.-Ing.
Dirk Westermann

University of Technology, Thuringian Energy Research


Director Thuringian Energy Research Institute
Head of Power System Group

  • TO INSTITUTE-WEBSITE
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Antina Sander

Corporate Development
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  • Email:
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Olivier Feix
CONTACT

Olivier Feix

Head of Corporate Development
  • Tel:
    +49 30 5150-0
  • Email:
    olivier.feix@50hertz.com
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