4.8 Article

A Compact-Design Oriented Shipboard Power Supply System With Transformer Integrated Filtering Method

Journal

IEEE TRANSACTIONS ON POWER ELECTRONICS
Volume 37, Issue 2, Pages 2089-2099

Publisher

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/TPEL.2021.3102938

Keywords

Power harmonic filters; Windings; Filtering; Harmonic analysis; Inductors; Passive filters; Propulsion; Integrated reactor; power quality; shipboard power supply system (SPSS); zero-impedance design

Funding

  1. International Science and Technology Cooperation Program of China [2018YFE0125300]
  2. National Natural Science Foundation of China [61973318, 52061130217]
  3. Distinguished Young Foundation of Hunan Province of China [2020JJ2045]
  4. Innovative Construction Program of Hunan Province of China [2019RS1016]
  5. 111 Project of China [B17016]
  6. Key R&D Program of Hunan Province of China [2020WK2007]
  7. Excellent Innovation Youth Program of Changsha of China [KQ2009037]

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This article presents a 12-pulse parallel operating transformer designed for optimization and integration of shipboard power supply system, aiming to improve power quality and reduce installation space. The system features harmonic-free power supply and high integration of power equipment, with a compact design achieved through analysis of system topology and compensation principles.
The rapid development of modern vessel leads to higher demands on the optimization and integration of shipboard power supply system (SPSS). In this article, a compact-design oriented 12-pulse parallel operating transformer employing shared integrated filter is presented for power quality improvement of SPSS with reduced installation space. The proposed SPSS is featured with harmonic-free power supply and high integration of power equipment. The system topology is introduced first, and the distinctive compensation principle is then analyzed. Taking into account both of the winding impedance matching and transformer size optimization, minimum radial dimension is searched and determined in the interval of approximative zero-impedance. Moreover, the inductance calculation method of integrated reactor together with its design domain is further given out. At last, the prototype of the proposed SPSS is tested in laboratory. The experimental results verify the feasibility and effectiveness of the proposal.

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