4.7 Article

Consensus-Based Droop Control Synthesis for Multiple DICs in Isolated Micro-Grids

Journal

IEEE TRANSACTIONS ON POWER SYSTEMS
Volume 30, Issue 5, Pages 2243-2256

Publisher

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/TPWRS.2014.2368135

Keywords

Consensus algorithm; droop control; energy functions; micro-grid; real-time simulations

Funding

  1. Ministry of Science and Technology, Taiwan, R.O.C. [NSC 102-2221-E-007-074, NSC 103-ET-E-007-002-ET, MOST 103-3113-E-002-014]

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The task of autonomous power sharing in a micro-grid is usually achieved by decentralized droop control on individual interface power converters, which may suffer from the dependence on output line impedances. Inaccurate reactive power sharing will occur under strongly non-uniform line impedances. Due to inherently distributed and heterogeneous nature of the micro-grid, it becomes an ideal platform for applications of consensus control algorithms. In this paper, the consensus-based droop control with sparse communication network is proposed to overcome the drawback of existing droop control methods. In particular, when line impedances of the power grid are either lossy with the uniform R/X ratio or even pure resistive, the consensus droop control is still an effective method for autonomous real and reactive power sharing. In addition, closed-loop system stability of the proposed consensus-based droop control method can be ensured by the energy function approach under certain conditions. Real-time simulations of two micro-grid systems are studied to validate the feasibility of the proposed consensus-based droop control method.

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