Improved Faulted Phase Selection Algorithm for Distance Protection under High Penetration of Renewable Energies

Author:

Martínez Carrasco Eduardo,Comech Moreno María Paz,Villén Martínez María Teresa,Borroy Vicente Samuel

Abstract

The high penetration of renewable energies will affect the performance of present protection algorithms due to fault current injection from generators based on power electronics. This paper explains the process followed for analyzing this effect on distance protection and the development of a new algorithm that improves its performance in such a scenario. First of all, four commercial protection relays were tested before fault current contribution from photovoltaic system and full converter wind turbines using the hardware in the loop technique. The analysis of results obtained, jointly with a theoretical analysis based on commonly used protection strategy of superimposed quantities, lead to a conclusion about the cause of observed wrong behaviors of present protection algorithms under a high penetration of renewables. According to these conclusions, a new algorithm has been developed to improve the detection of faulted phase selection and directionality on distance protection under a short circuit current fed by renewable energy sources.

Publisher

MDPI AG

Subject

Energy (miscellaneous),Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment,Electrical and Electronic Engineering,Control and Optimization,Engineering (miscellaneous)

Reference31 articles.

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2. Influence of Negative-Sequence Control under Converter-Interface-based Generation in Distance Protection Relays;2023 IEEE International Conference on Environment and Electrical Engineering and 2023 IEEE Industrial and Commercial Power Systems Europe (EEEIC / I&CPS Europe);2023-06-06

3. Protection of Tie Lines Connected to Large-Scale Renewable Power Sources: Research Status, Challenges and Future Trends;2023 Panda Forum on Power and Energy (PandaFPE);2023-04

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5. Assessment of the Performance of Phasor-Based and Transients-Based Faulted Phase Identification Techniques in the Presence of Inverter Interfaced Resources;Energies;2023-01-05

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