Dynamic Incentives For Optimal Control Of Competitive Power Systems


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Dynamic Incentives for Optimal Control of Competitive Power Systems


Dynamic Incentives for Optimal Control of Competitive Power Systems

Author: Kölsch, Lukas

language: en

Publisher: KIT Scientific Publishing

Release Date: 2022-10-11


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This work presents a real-time dynamic pricing framework for future electricity markets. Deduced by first-principles analysis of physical, economic, and communication constraints within the power system, the proposed feedback control mechanism ensures both closed-loop system stability and economic efficiency at any given time. The resulting price signals are able to incentivize competitive market participants to eliminate spatio-temporal shortages in power supply quickly and purposively.

A Framework for Decentralized Stabilization in Networked Energy Systems: A Passivity-Based Approach


A Framework for Decentralized Stabilization in Networked Energy Systems: A Passivity-Based Approach

Author: Strehle, Felix

language: en

Publisher: KIT Scientific Publishing

Release Date: 2024-12-20


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This work proposes a passivity-based framework for the decentralized stabilization of networked energy systems. Its key innovation are equilibrium-independent, passivity-based conditions for modularly inferring asymptotic stability. The framework allows for topology-independent, flexible system configurations in a plug-and-play fashion and extends to other control solutions and technologies, enabling holistic system and control approaches for networked multi-energy systems.

Transactive Control of Coupled Electric Power and District Heating Networks


Transactive Control of Coupled Electric Power and District Heating Networks

Author: Maurer, Jona

language: en

Publisher: KIT Scientific Publishing

Release Date: 2023-06-27


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Der Entwurf von Ansätzen zur marktbasierten Betriebsführung zukünftiger Energienetze steht vor der technischen Herausforderung, eine enorme Anzahl von Netzteilnehmern zeitlich und örtlich zu koordinieren, um Erzeugung und Verbrauch auszugleichen und einen sicheren Netzbetrieb zu ermöglichen. Um dieser Herausforderung zu begegnen entstand das Forschungsfeld der Transactive Control Ansätze. In dieser Arbeit wird ein neuer Transactive Control Ansatz für gekoppelte Strom- und Wärmenetze vorgestellt. - The design of approaches for future market-based energy network operation faces the technical challenge of needing to coordinate a vast number of network participants spatially and temporally, in order to balance energy supply and demand, while achieving secure network operation. To meet this challenge, the research field of transactive control emerged. Within this work a new transactive control approach for coupled electric power and district heating networks is presented.