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A simplified algorithm to solve optimal power flows in hybrid VSC-based ACDC systems

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IIT-17-165A.pdf (748.8Kb)
Autor
Renedo Anglada, Javier
Ibrahim, Ahmad Asrul
Kazemtabrizi, Behzad
García Cerrada, Aurelio
Rouco Rodríguez, Luis
Zhao, Quanyu
García González, Javier
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info:eu-repo/semantics/draft
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High Voltage Direct Current systems based on Voltage Source Converters (VSC-HVDC) are increasingly being considered as a viable technology with advantages, above all when using underground or submarine cables for bulk power transmission. In order to fully understand how VSC-HVDC systems can be best used within existing power systems, it is necessary to adapt conventional tools to carry out system-wide studies including this technology. Along this line, this paper proposes a simplified algorithm to solve optimal power flows (OPFs) in hybrid VSCbased Alternating Current Direct Current (ACDC) grids with multi-terminal VSC-HVDC systems. The proposed algorithm makes it possible to seamlessly extend a previous large-scale AC case to which several multi-terminal VSC-HVDC systems must be added. The proposed approach combines two ideas used previously in two different modelling approaches: each VSC is modelled as two generators with a coupling constraint; and DC grids are modelled as notional AC grids, since, in per unit, the equations for the former are a particular case of the latter with resistive lines and no reactive-power injections. In the proposed approach, the hybrid VSC-based ACDC system is transformed into an equivalent only-AC system. Therefore, the OPF solution of the ACDC system can be found with the same tool used for the previous AC problem and a simple extension of the original case.
 
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http://hdl.handle.net/11531/25187
A simplified algorithm to solve optimal power flows in hybrid VSC-based ACDC systems
Palabras Clave

VSC HVDC, HVDC transmission, multi-terminal, optimal power flow, power systems.
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Repositorio de la Universidad Pontificia Comillas copyright © 2015  Desarrollado con DSpace Software
Contacto | Sugerencias