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Juan C. Vasquez

Researcher at Aalborg University

Publications -  492
Citations -  32307

Juan C. Vasquez is an academic researcher from Aalborg University. The author has contributed to research in topics: Microgrid & Voltage droop. The author has an hindex of 67, co-authored 426 publications receiving 24605 citations. Previous affiliations of Juan C. Vasquez include University of Technology, Sydney & Polytechnic University of Catalonia.

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DC-Link Voltage Control Aided for the Inertial Support During Severe Faults in Weak Grids

TL;DR: A simple yet effective solution based on the virtual inertia concept, which adjusts the active and reactive current set points and enables the converter to remain synchronized to the grid during severe faults, is proposed in this article.
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Research on synchronverter-based regenerative braking energy feedback system of urban rail transit

TL;DR: The synchronverter-based RBE feedback system of urban rail transit becomes more flexible, effective and robust and can be self-synchronized with the AC grid and make corresponding power management on the basis of changes in the voltage amplitude as well as the frequency of the grid.
Journal ArticleDOI

Power and Energy Applications Based on Quantum Computing: The Possible Potentials of Grover’s Algorithm

TL;DR: One of the most famous quantum computing algorithms (i.e., Grover's algorithm) is discussed and the potential applications of this algorithm in power and energy systems are discussed, which can serve as one of the starting points for using Grover’s algorithm inPower andEnergy systems.
Proceedings ArticleDOI

Energy Management System for an Islanded Renewables-based DC Microgrid

TL;DR: A supervisory energy management system for optimal operation of islanded DC microgrid is proposed and validated experimentally and practical results prove the effectiveness of the proposed method.
Proceedings ArticleDOI

Energy management system with equalization algorithm for distributed energy storage systems in PV-active generator based low voltage DC microgrids

TL;DR: In this article, a centralized strategy for equalizing the state of charge of distributed energy storage systems in an islanded DC microgrid is presented, which modifies the charge or discharge rate by weighting the virtual resistor of local droop control loops at each distributed ESS system.