2010Unpublished venueRequires access

In-lab research grid for optimization and control of wind and energy storage systems

Hee Han, Ted Brekken, Annette von Jouanne, A. Bistrika, Alex Yokochi

Open publisher page 9 citations

Abstract

The variability of wind power limits its grid penetration and increases costs. At high penetration levels, the variable output of wind requires utilities to dedicate much of their available reserve generation capacity to accommodate this variability. This paper presents research on improving wind energy integration through more effective coordination of traditional generation resources and energy storage systems (including analysis and control) that can optimize wind energy production while also increasing the predictability of wind farm output. This advanced research includes comprehensive simulations and experimental lab-grid implementation including renewable installations, traditional generation sources, energy storage technologies, power electronic converter control, and representative loads.

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What this paper is about

The variability of wind power limits its grid penetration and increases costs. At high penetration levels, the variable output of wind requires utilities to dedicate much of their available reserve generation capacity to accommodate this variability. This paper presents research on improving wind energy integration through more effective coordination of traditional generation resources and energy storage systems (including analysis and control) that can optimize wind energy production while also increasing the predictability of wind farm output. This advanced research includes comprehensive simulations and experimental lab-grid implementation including renewable installations, traditional generation sources, energy storage technologies, power electronic converter control, and representative loads.

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OpenAlex reports 9 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

The variability of wind power limits its grid penetration and increases costs. At high penetration levels, the variable output of wind requires utilities to dedicate much of their available reserve generation capacity to accommodate this variability. This paper presents research on improving wind energy integration through more effective coordination of traditional generation resources and energy storage systems (including analysis and control) that can optimize wind energy production while also increasing the predictability of wind farm output. This advanced research includes comprehensive simulations and experimental lab-grid implementation including renewable installations, traditional generation sources, energy storage technologies, power electronic converter control, and representative loads.

Key concepts: Wind power, Renewable energy, Variable renewable energy, Energy storage, Intermittent energy source, Grid, Predictability, Distributed generation

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