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Assessing the impact of inertia and reactive power constraints in generation expansion planning

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IIT-20-108A.pdf (598.6Kb)
Date
2020-12-15
Author
Wogrin, Sonja
Tejada Arango, Diego Alejandro
Delikaraoglou, Stefanos
Botterud, Audun
Estado
info:eu-repo/semantics/publishedVersion
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Abstract
 
 
On the path towards power systems with high renewable penetrations and ultimately carbon-neutral, more and more synchronous generation is being displaced by variable renewable generation that does not currently provide system inertia nor reactive power support. This could create serious issues of power system stability in the near future, and countries with high renewable penetrations such as Ireland are already facing these challenges. Therefore, this paper aims at answering the questions of whether and how explicitly including inertia and reactive power constraints in generation expansion planning would a ect the optimal capacity mix of the power system of the future. Towards this end, we propose the novel Low-carbon Expansion Generation Optimization model, which explicitly accounts for: unit commitment constraints, Rate of Change of Frequency inertia requirements and virtual inertia provision, and, a secondorder cone programming approximation of the AC power ow, accounting for reactive power constraints. An illustrative case study underlines that disregarding inertia and reactive power constraints in generation expansion planning can result in additional system cost, system infeasibilities, a distortion of optimal resource allocation and inability to reach established policy goals.
 
URI
https:doi.org10.1016j.apenergy.2020.115925
Assessing the impact of inertia and reactive power constraints in generation expansion planning
Tipo de Actividad
Artículos en revistas
ISSN
0306-2619
Materias/ categorías / ODS
Instituto de Investigación Tecnológica (IIT)
Palabras Clave

Generation expansion planning; Inertia; Reactive power; Unit commitment
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