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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.

Papers
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Brief Survey on Attack Detection Methods for Cyber-Physical Systems

TL;DR: Various false data injection attack detection methods presented for CPSs are investigated and reviewed and the development of distributed attack detection is reviewed according to different decoupling methods.
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Containment and Consensus-Based Distributed Coordination Control to Achieve Bounded Voltage and Precise Reactive Power Sharing in Islanded AC Microgrids

TL;DR: In this article, a distributed approach to achieve both bounded voltage and accurate reactive power sharing regulation in ac microgrid is presented, where a containment and consensus-based distributed coordination controller is proposed, by which the bus voltage magnitudes can be bounded within a reasonable range, instead of only controlling average voltage value.
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An Islanding Detection Method by Using Frequency Positive Feedback Based on FLL for Single-Phase Microgrid

TL;DR: An active islanding detection method based on frequency-locked loop (FLL) for constant power controlled inverter in single-phase microgrid is proposed, which generates a phase shift comparing the instantaneous frequency obtained from FLL unit with the nominal frequency to modify the reference phase angle.
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A Decentralized Current-Sharing Controller Endows Fast Transient Response to Parallel DC–DC Converters

TL;DR: In this article, a decentralized current-sharing control strategy is proposed to endow fast transient response to paralleled dc-dc converters systems, such as dc microgrids or distributed power systems.
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Analysis and Comparison of Notch Filter and Capacitor Voltage Feedforward Active Damping Techniques for LCL Grid-Connected Converters

TL;DR: This paper proves that filtered capacitor voltage feedforward is a more robust and reliable solution than implementations based on cascade notch filters.