4.8 Article

Predictive Optimal Switching Sequence Direct Power Control for Grid-Connected Power Converters

Journal

IEEE TRANSACTIONS ON INDUSTRIAL ELECTRONICS
Volume 62, Issue 4, Pages 2010-2020

Publisher

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/TIE.2014.2351378

Keywords

AC-DC converters; model predictive control; power converters; power electronics; smartgrid

Funding

  1. Ministerio Espanol de Economia y Competitividad [ENE2012-36897]
  2. Consejeria de Innovacion Ciencia y Empresa (Junta de Andalucia) [P11-TIC-7070]

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Grid-connected power converters play a key role in several applications such as the integration of renewable energy sources and motor drives. For this reason, the development of high performance control strategies for this particular class of power converters has increasingly attracted the interest of both academic and industry researchers. This paper presents the predictive optimal switching sequence (OSS) direct power control (DPC) (OSS-DPC) algorithm for grid-connected converters. The OSS-DPC method belongs to the predictive-DPC family and provides the desired power references by calculating globally OSSs. To address computational and implementation issues, an efficient control algorithm, named reduced OSS-DPC, is introduced. The implementation of the proposed control strategy in a standard DSP is evaluated on a two-level power converter prototype working as a STATCOM. Experimental results show the algorithm's potential to provide high performance during both transient and steady states.

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