Switchgear Digitalization—Research Path, Status, and Future Work

Author:

Kaštelan Nediljko,Vujović IgorORCID,Krčum MajaORCID,Assani NurORCID

Abstract

To keep pace with global energy efficiency trends and, in particular, emission reduction targets in the maritime sector, both onshore and maritime power distribution systems need to be adapted to the relevant new technologies and concepts. As an important link in the distribution chain, medium-voltage switchgear (MV) is expected to be stable and reliable while operating as efficiently as possible. Failures of MV equipment, while rare because the equipment must be safe to handle and use, have far-reaching consequences. The consequences of such failures, whether to the shore or marine power system, present risks to the entire power plant, so an accurate assessment of equipment condition is required to identify potential failures early. The solution is an emerging concept of digital switchgear, where the implementation of sensor technology and communication protocols enables effective condition monitoring, and the creation of a database that, when combined with machine learning algorithms, enables predictive maintenance and/or fault detection. This paper presents, step by step, the previous challenges, the current research (divided into predictive maintenance, condition monitoring, and fault detection categories), and the future directions in this field. The use of artificial intelligence is discussed to eliminate the disadvantage of manually interpreting operational data, and recommendations for future work are formulated, such as the need to standardize test procedures and data sets to train and compare different algorithms before they are used in practice.

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Biochemistry,Instrumentation,Atomic and Molecular Physics, and Optics,Analytical Chemistry

Reference76 articles.

1. World Energy Outlook—Topics https://www.iea.org/topics/world-energy-outlook

2. Electrification of Vessels for Garbage Collection and Treatment in Venice Lagoon;Bortuzzo;Proceedings of the 2021 Sixteenth International Conference on Ecological Vehicles and Renewable Energies (EVER),2021

3. Sustainable Boat Transportation Throughout Electrification of Propulsion Systems: Challenges and Opportunities;Campillo;Proceedings of the 2019 2nd Latin American Conference on Intelligent Transportation Systems (ITS LATAM),2019

4. Towards Ferry Electrification in the Maritime Sector

5. Fourth Greenhouse Gas Study https://www.imo.org/en/OurWork/Environment/Pages/Fourth-IMO-Greenhouse-Gas-Study-2020.aspx

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