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May 17, 2026Renewable and Sustainable Energy Reviews0 citationsOpen Access

Master-slave control schemes for microgrids: A critical review

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AIAli Ahmed A. IsmailNMNsilulu T. MbunguAEA. Elnady

Key Points

  • The aim is to review master-slave control strategies for effective operation and coordination of microgrids.
  • Conducted a comprehensive survey of master-slave control strategies for microgrid operation.
  • Identified and evaluated four principal master-slave control approaches.
  • Explored unspecified or less commonly used master-slave methods.
  • Outlined the benefits and challenges of various master-slave control strategies for microgrid coordination.
  • Classified modeling approaches for master-slave control development.
  • Provided insights on future commercialization aspects of microgrids.

Abstract

The centralized controller of the microgrid coordinates the power inverters of the diverse power-source units. A master-slave control scheme is one of the best methods for centralized coordination of different power-source inverters in a microgrid at a common coupling point. Thus, a survey of the master-slave control strategy for the effective operation of a microgrid is conducted. This study provides a comprehensive assessment of the microgrid concept, types, deployment, benefits, and control levels to establish the development of smart-slave control methods. The master-slave control strategies are then evaluated based on the contributions of the controller units and their implementation philosophies. Four principal master-slave control approaches have been identified to address the diverse operating modes of a microgrid. These strategies include communication among master-slaves, optimal master-slaves, and selection of the master unit and the slave control unit. Some unspecified or less commonly used methods are also explored. A future perspective on the master-slave control strategy in the smart grid environment is also provided. This study provides a suitable platform for developing master-slave control in an intelligent microgrid environment. • Evaluate the deployment and control of the smart microgrid environment. • Provide an intrinsic platform for a suitable centralized control-based master-slave approach. • Classify the modelling approaches for a master-slave control development. • A perspective on ensuring the commercialization of microgrids is provided.

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Cite This Study

Ismail et al. (2026) studied this question.

synapsesocial.com/papers/6a095a877880e6d24efe0888https://doi.org/10.1016/j.rser.2026.117065
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