Sustainable energy systems of the future will need more than efficient, clean, and low-cost energy sources. They will also need efficient price signals that motivate sustainable energy consumption behaviors and a tight real-time alignment of energy demand with supply from renewable and traditional sources. The Power Trading Agent Competition (Power TAC) is a rich, competitive, open-source simulation platform for future retail power markets built on real-world data and state-of-the-art customer models. Its purpose is to help researchers understand the dynamics of customer and retailer decision-making as well as the robustness of proposed market designs. Power TAC invites researchers to develop autonomous electricity broker agents and to pit ...
This is the specification for the Power Trading Agent Competition for 2020 (Power TAC 2020). Power ...
This is the specification for the Power Trading Agent Competition for 2018 (Power TAC 2018). Power T...
Due to the increase in population with higher demand for energy, sustainable energy systems for the ...
Intelligent agents are a critical technology in managing the increasingly complex and decentralized ...
Sustainable energy systems of the future will no longer be able to rely on the current paradigm that...
Sustainable energy systems of the future will no longer be able to rely on the current paradigm that...
Current energy models and infrastructures are facing the challenging of restructuring in order to fa...
Sustainable power system requires not only environmentally friendly, cost-efficient and renewable en...
This is the specification for the Power Trading Agent Competition for 2012 (Power TAC 2012). Power T...
This is the specification for the Power Trading Agent Competition for 2012 (Power TAC 2012). Power T...
This is the specification for the Power Trading Agent Competition for 2013 (Power TAC 2013). Power T...
With increasing energy demand and an intermittent supply of renewable energy sources, our current en...
For a transition to a sustainable energy future, smart grids must adapt to the mass introduction of ...
This is the specification for the Power Trading Agent Competition for 2014 (Power TAC 2014). Power T...
This is the specification for the Power Trading Agent Competition for 2015 (Power TAC 2015). Power T...
This is the specification for the Power Trading Agent Competition for 2020 (Power TAC 2020). Power ...
This is the specification for the Power Trading Agent Competition for 2018 (Power TAC 2018). Power T...
Due to the increase in population with higher demand for energy, sustainable energy systems for the ...
Intelligent agents are a critical technology in managing the increasingly complex and decentralized ...
Sustainable energy systems of the future will no longer be able to rely on the current paradigm that...
Sustainable energy systems of the future will no longer be able to rely on the current paradigm that...
Current energy models and infrastructures are facing the challenging of restructuring in order to fa...
Sustainable power system requires not only environmentally friendly, cost-efficient and renewable en...
This is the specification for the Power Trading Agent Competition for 2012 (Power TAC 2012). Power T...
This is the specification for the Power Trading Agent Competition for 2012 (Power TAC 2012). Power T...
This is the specification for the Power Trading Agent Competition for 2013 (Power TAC 2013). Power T...
With increasing energy demand and an intermittent supply of renewable energy sources, our current en...
For a transition to a sustainable energy future, smart grids must adapt to the mass introduction of ...
This is the specification for the Power Trading Agent Competition for 2014 (Power TAC 2014). Power T...
This is the specification for the Power Trading Agent Competition for 2015 (Power TAC 2015). Power T...
This is the specification for the Power Trading Agent Competition for 2020 (Power TAC 2020). Power ...
This is the specification for the Power Trading Agent Competition for 2018 (Power TAC 2018). Power T...
Due to the increase in population with higher demand for energy, sustainable energy systems for the ...