Plug-and-play and coordinated control for bus-connected AC islanded microgrids
Stefano Riverso, Michele Tucci, Juan C. Vasquez, Josep M. Guerrero,, Giancarlo Ferrari-Trecate

TL;DR
This paper introduces a distributed, plug-and-play control architecture for bus-connected AC islanded microgrids, enabling automatic addition/removal of generation units while maintaining stability and power sharing.
Contribution
It proposes a novel modular control framework with local controllers designed via convex optimization, enhancing stability and flexibility in bus-connected microgrids.
Findings
Experimental validation with balanced, unbalanced, and nonlinear loads.
Stable operation after adding/removing generation units.
Feasibility of virtual power plant deployment.
Abstract
This paper presents a distributed control architecture for voltage and frequency stabilization in AC islanded microgrids. In the primary control layer, each generation unit is equipped with a local controller acting on the corresponding voltage-source converter. Following the plug-and-play design approach previously proposed by some of the authors, whenever the addition/removal of a distributed generation unit is required, feasibility of the operation is automatically checked by designing local controllers through convex optimization. The update of the voltage-control layer, when units plug -in/-out, is therefore automatized and stability of the microgrid is always preserved. Moreover, local control design is based only on the knowledge of parameters of power lines and it does not require to store a global microgrid model. In this work, we focus on bus-connected microgrid topologies and…
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Taxonomy
TopicsMicrogrid Control and Optimization · Islanding Detection in Power Systems · Optimal Power Flow Distribution
