2018
DOI: 10.1109/tsp.2018.2827331
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Decentralized DC Microgrid Monitoring and Optimization via Primary Control Perturbations

Abstract: We treat the emerging power systems with direct current (DC) MicroGrids, characterized with high penetration of power electronic converters. We rely on the power electronics to propose a decentralized solution for autonomous learning of and adaptation to the operating conditions of the DC Mirogrids; the goal is to eliminate the need to rely on an external communication system for such purpose. The solution works within the primary droop control loops and uses only local bus voltage measurements. Each controlle… Show more

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Cited by 7 publications
(9 citation statements)
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References 51 publications
(137 reference statements)
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“…According to [28][29][30], the economic dispatch of DC-based dispatchable DG units was achieved based on linearized models of the MG, while an optimal control problem was formulated to enhance common bus voltage regulation by tuning controller parameters on one hand [27,[31][32][33] and by achieving optimal storage cycle on the other [34,35]. The DC droop settings were selected based on the economic criteria in [36] and the environmentally oriented objectives in [37].…”
Section: Microgridmentioning
confidence: 99%
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“…According to [28][29][30], the economic dispatch of DC-based dispatchable DG units was achieved based on linearized models of the MG, while an optimal control problem was formulated to enhance common bus voltage regulation by tuning controller parameters on one hand [27,[31][32][33] and by achieving optimal storage cycle on the other [34,35]. The DC droop settings were selected based on the economic criteria in [36] and the environmentally oriented objectives in [37].…”
Section: Microgridmentioning
confidence: 99%
“…The operation of tertiary control usually involves collecting data and measurements and then using them in an optimization process to yield the optimum setting for the MG-controllable components. This complete strategy, also referred to as EMS, aims to achieve the desired objectives such as optimal droop coefficients for an environmentally friendly DG unit operation [84,85]; secondary PI controller parameter selection to preserve MG stability [60,71]; efficient charge and discharge of BESS [86][87][88]; contingency reserve management [89][90][91][92]; and economic dispatch of DG units [28,93].…”
Section: Tertiary Controlmentioning
confidence: 99%
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