4.7 Article

Conditions for stability of droop-controlled inverter-based microgrids

期刊

AUTOMATICA
卷 50, 期 10, 页码 2457-2469

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.automatica.2014.08.009

关键词

Microgrid control; Microgrid stability; Smart grid applications; Inverters; Droop control; Port-Hamiltonian systems; Power sharing

资金

  1. HYCON2 Network of excellence [FP7 ICT 257462]

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We consider the problem of stability analysis for droop-controlled inverter-based microgrids with meshed topologies. The inverter models include variable frequencies as well as voltage amplitudes. Conditions on the tuning gains and setpoints for frequency and voltage stability, together with desired active power sharing, are derived in the paper. First, we prove that for all practical choices of these parameters global boundedness of trajectories is ensured. Subsequently, assuming the microgrid is lossless, a port-Hamiltonian description is derived, from which sufficient conditions for stability are given. Finally, we propose for generic lossy microgrids a design criterion for the controller gains and setpoints such that a desired steady-state active power distribution is achieved. The analysis is validated via simulation on a microgrid based on the CIGRE (Conseil International des Grands Reseaux Electriques) benchmark medium voltage distribution network (C) 2014 Elsevier Ltd. All rights reserved.

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