4.5 Article

Electromechanical Design of Synchronous Power Controller in Grid Integration of Renewable Power Converters to Support Dynamic Stability

Journal

ENERGIES
Volume 14, Issue 8, Pages -

Publisher

MDPI
DOI: 10.3390/en14082115

Keywords

dynamic stability; renewables grid connection; small signal modelling; synchronous power controller; virtual inertia; virtual damping

Categories

Funding

  1. Spanish Ministry of Science Innovation and Universities [RTI-2018-100921-B-21]
  2. H2020-LC-SC3-2018-ES-SCC project Interface [GA824330]

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Modern power converters in renewable power plants provide flexible electromechanical characteristics through developed control technologies, such as Synchronous Power Controller (SPC), to support dynamic stability in the power generation area. A novel mathematical pattern and strategy were proposed to adjust dynamic parameters in Renewable Static Synchronous Generators controlled by SPC (RSSG-SPC), showing effective results in grid connection.
Nowadays, modern power converters installed in renewable power plants can provide flexible electromechanical characteristics that rely on the developed control technologies such as Synchronous Power Controller (SPC). Since high renewable penetrated power grids result in a low-inertia system, this electromechanical characteristic provides support to the dynamic stability of active power and frequency in the power generation area. This goal can be achieved through the proper tuning of virtual electromechanical parameters that are embedded in the control layers of power converters. In this paper, a novel mathematical pattern and strategy have been proposed to adjust dynamic parameters in Renewable Static Synchronous Generators controlled by SPC (RSSG-SPC). A detailed dynamic modeling was obtained for a feasible design of virtual damping coefficient and virtual moment of inertia in the electrometrical control layer of RSSG-SPC's power converters. Mathematical solutions, modal analysis outcomes, time-domain simulation results, and real-time validations of the test in IEEE-14B benchmark confirm that the proposed method is an effective procedure for the dynamic design of RSSG-SPC to provide these dynamic stability supports in grid connection.

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