
Requirements for control strategies of grid‐connected converters in the future power system
Author(s) -
Emanuel Hanna,
Brombach Johannes,
Rosso Roberto,
Pierros Konstantinos
Publication year - 2020
Publication title -
iet renewable power generation
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.005
H-Index - 76
ISSN - 1752-1424
DOI - 10.1049/iet-rpg.2020.0156
Subject(s) - converters , grid , electric power system , computer science , control (management) , reliability (semiconductor) , power (physics) , key (lock) , control engineering , electrical engineering , reliability engineering , engineering , computer security , voltage , physics , geometry , mathematics , quantum mechanics , artificial intelligence
The increasing penetration of converter‐based generation in many power systems around the world has sparked a discussion about how to operate these power systems with the usual levels of efficiency, reliability and cost‐effectiveness. Current grid‐following converter‐based generators have proven to run stably in parallel to one another, even if there are thousands of them connected in a power system, and even in very small isolated power systems with extremely low system inertia. Discussions around the necessity of additional converter performance, usually under the ‘grid‐forming’ and ‘Virtual Synchronous Machines’ concepts, have recently been transferred from the academic sphere to national and international industry fora. Formal discussions have started in Great Britain, in Germany and at ENTSO‐E level. However, there is still a lot of uncertainty about the real and not simulated performance of grid‐forming converters, whilst the needs case for requiring this radically different control method has not been adequately justified. With the present paper we raise key questions that will serve towards an objective discussion about power system needs, grid infeed technologies and their interaction.