Model-Free Power Control for Low-Voltage AC Dispatchable Microgrids with Multiple Points of Connection

ENERGIES(2021)

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摘要
This paper proposes a modified version of the power-based control (MPBC) applied to microgrids (mu Gs) with multiple points of connection (i.e., utility grid itself or any other neighboring mu G). Using the MPBC, single-phase distributed energy resources (DERs) arbitrarily connected between the phases share the amounts of balanced power, while the unbalanced and homopolar power are steered only to the line-to-neutral inverters. The control technique is based on a three-level hierarchical control using narrow bandwidth, low data rate communication that properly coordinates the DERs connected to three-phase four-wire mu Gs. The MPBC allows the DERs to steer power flow at any of the multiple points of common coupling of a multi-PCC dispatchable mu G. The modified control proposed herein is evaluated through simulation results using MATLAB/SIMULINK considering a real urban distribution grid with typical operational elements and conditions. When compared to the original power-based control (PBC), results show that a meshed mu G may reach power benchmarks with accommodation time 80% lower when applying MPBC. Moreover, it may also lead to significant power loss reduction (about of 5%) in some studied cases.
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关键词
dispatchable microgrids, multi-PCC microgrids, hierarchical control, power sharing
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