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DVOŘÁČEK, J. DRÁPELA, J. MORÁVEK, J. VOJTEK, M. TOMAN, P. RASSÕLKIN, A. VAIMANN, T.
Original Title
Compliance testing concept of grid-connected inverter-based resources using simulated input
Type
conference paper
Language
English
Original Abstract
The paper aims at methods for compliance testing of power-generating modules (PGMs) or their components. The methods discussion include power-hardware-in-loop (PHIL), controller-hardware-in-loop and novel simulated input PHIL (SI-PHIL) techniques. The advantages and disadvantages of the test techniques and their feasibility for laboratory or field settings are presented. In the following, the SI-PHIL approach to verify selected PGM requirements related to static network support is demonstrated on an inverter based PGM model. Further discussion aims at the necessity to establish robust test methodology if SI-PHIL is to be extensively used and points out possible critical vulnerabilities of internet-connected PGMs.
Keywords
distributed generation, compliance verification, simulation, simulated input, grid code
Authors
DVOŘÁČEK, J.; DRÁPELA, J.; MORÁVEK, J.; VOJTEK, M.; TOMAN, P.; RASSÕLKIN, A.; VAIMANN, T.
Released
24. 5. 2023
Publisher
IEEE
Location
NEW YORK
ISBN
979-8-3503-3593-4
Book
Proceedings of the 2023 23rd International Scientific Conference on Electric Power Engineering (EPE)
Pages from
55
Pages to
60
Pages count
6
URL
https://ieeexplore.ieee.org/document/10149232
BibTex
@inproceedings{BUT183621, author="Jiří {Dvořáček} and Jiří {Drápela} and Jan {Morávek} and Martin {Vojtek} and Petr {Toman} and Anton {Rassõlkin} and Toomas {Vaimann}", title="Compliance testing concept of grid-connected inverter-based resources using simulated input", booktitle="Proceedings of the 2023 23rd International Scientific Conference on Electric Power Engineering (EPE)", year="2023", pages="55--60", publisher="IEEE", address="NEW YORK", doi="10.1109/EPE58302.2023.10149232", isbn="979-8-3503-3593-4", url="https://ieeexplore.ieee.org/document/10149232" }