J
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.
Journal ArticleDOI
Containment and Consensus-Based Distributed Coordination Control to Achieve Bounded Voltage and Precise Reactive Power Sharing in Islanded AC Microgrids
Renke Han,Lexuan Meng,Giancarlo Ferrari-Trecate,Ernane Antônio Alves Coelho,Juan C. Vasquez,Josep M. Guerrero +5 more
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.