2015Unpublished venueRequires access

Comparison of flywheels and batteries in combination with industrial plants for the provision of Primary Control Reserve

Fabian Wandelt, Dennis Gamrad, Wolfgang Deis, Johanna Myrzik

Open publisher page 3 citations

Abstract

In this contribution, an own developed simulation model is presented that analyzes the performance of storages with limited capacity providing Primary Control Reserve. It is shown that the combination of an industrial plant with an energy storage is one possibility for a reliable frequency regulation. In this regard, the performance of a large-scale battery storage system is compared to a flywheel. It is shown that different storage technologies require different kinds of industrial plants for a cooperative frequency regulation. In an economic feasibility study, the operation of a flywheel and a battery, each combined with an industrial plant, is compared.

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What this paper is about

In this contribution, an own developed simulation model is presented that analyzes the performance of storages with limited capacity providing Primary Control Reserve. It is shown that the combination of an industrial plant with an energy storage is one possibility for a reliable frequency regulation. In this regard, the performance of a large-scale battery storage system is compared to a flywheel. It is shown that different storage technologies require different kinds of industrial plants for a cooperative frequency regulation. In an economic feasibility study, the operation of a flywheel and a battery, each combined with an industrial plant, is compared.

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OpenAlex reports 3 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

In this contribution, an own developed simulation model is presented that analyzes the performance of storages with limited capacity providing Primary Control Reserve. It is shown that the combination of an industrial plant with an energy storage is one possibility for a reliable frequency regulation. In this regard, the performance of a large-scale battery storage system is compared to a flywheel. It is shown that different storage technologies require different kinds of industrial plants for a cooperative frequency regulation. In an economic feasibility study, the operation of a flywheel and a battery, each combined with an industrial plant, is compared.

Key concepts: Flywheel, Flywheel energy storage, Battery (electricity), Frequency regulation, Energy storage, Control (management), Automatic frequency control, Automotive engineering

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