Sub-Synchronous Torsional Interactions (SSTIs) characterize all the power systems with joint presence of rotating machinery and power converters. In this paper a ship equipped with gas turbines is considered as case study. It is investigated the possibility to avoid torsional instability thanks to the employment of Resonant controllers in the control system of the power conversion stage. Successful results are verified also in critical operation conditions. Black-outs can be prevented acting on the control loop and without the addition of redundant turbine-generator units in the network.
Resonant Controllers to Achieve Torsional Stability: a Ship Case Study / Bongini L.; Mastromauro R.A.. - ELETTRONICO. - (2023), pp. 1-6. (Intervento presentato al convegno 2023 IEEE International Conference on Electrical Systems for Aircraft, Railway, Ship Propulsion and Road Vehicles & International Transportation Electrification Conference (ESARS-ITEC) tenutosi a Venice, Italy nel 29-31 March 2023) [10.1109/ESARS-ITEC57127.2023.10114877].
Resonant Controllers to Achieve Torsional Stability: a Ship Case Study
Mastromauro R. A.
2023
Abstract
Sub-Synchronous Torsional Interactions (SSTIs) characterize all the power systems with joint presence of rotating machinery and power converters. In this paper a ship equipped with gas turbines is considered as case study. It is investigated the possibility to avoid torsional instability thanks to the employment of Resonant controllers in the control system of the power conversion stage. Successful results are verified also in critical operation conditions. Black-outs can be prevented acting on the control loop and without the addition of redundant turbine-generator units in the network.File | Dimensione | Formato | |
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