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The operation and optimization of integrated electricity and natural gas systems is investigated. The couplings between these different infrastructures are modeled by energy hubs, which can convert and store different types of energy. In previous work, the interaction between three interconnected hubs has been analyzed. In order to take into account predicted system behavior and operational constraints,...
The optimal operation of an integrated electricity and natural gas infrastructure is investigated. The couplings between the electricity system and the gas system are modeled by so-called energy hubs, which represent the interface between the loads on the one hand and the transmission infrastructures on the other. To increase reliability and efficiency, storage devices are present in the multi-carrier...
This paper presents an overview of the methods and modeling concepts developed in the framework of the project ??Vision of Future Energy Networks??. It outlines the fundamentals of the project comprising (a) the development of modeling and analysis tools for systems involving multiple energy carriers (e.g. electricity, heat and gas) and (b) a Greenfield approach for the integrated planning and realization...
The optimization of combined electricity and natural gas systems is addressed in this paper. The two networks are connected via energy hubs. Using the energy hub concept, the interactions between the different infrastructures can be analyzed. A system consisting of several interconnected hubs forms a distributed power generation structure where each hub is controlled by its respective control agent...
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