Future MVDC shipboard power systems will be characterized by a progressive employment of power converters. In this paper, starting from a real case-study, the focus is on two AC/DC power conversion stages forming the MVDC bus of a shipboard power system. A preliminary design of the AC/DC power conversion stages and their control system is provided in order to verify feasible operations. A coordination strategy based on the droop control technique is adopted achieving load power sharing. Simulation results verify proper operation also in case of pulsating loads.
Early Design of AC/DC Interface Converters and Control System for a MW-scale MVDC Shipboard Power System / Rosa Anna Mastromauro, Lorenzo Bongini, Daniele Bosich, Giorgio Sulligoi. - ELETTRONICO. - (2018), pp. 3407-3412. (Intervento presentato al convegno IECON 2018 - 44th Annual Conference of the IEEE Industrial Electronics Society tenutosi a Washington D.C. nel 21-23 Ottobre 2018) [10.1109/IECON.2018.8591372].
Early Design of AC/DC Interface Converters and Control System for a MW-scale MVDC Shipboard Power System
Rosa Anna Mastromauro;Lorenzo Bongini;
2018
Abstract
Future MVDC shipboard power systems will be characterized by a progressive employment of power converters. In this paper, starting from a real case-study, the focus is on two AC/DC power conversion stages forming the MVDC bus of a shipboard power system. A preliminary design of the AC/DC power conversion stages and their control system is provided in order to verify feasible operations. A coordination strategy based on the droop control technique is adopted achieving load power sharing. Simulation results verify proper operation also in case of pulsating loads.File | Dimensione | Formato | |
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