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Xiaoyu Wang
Researcher at Carleton University
Publications - 104
Citations - 3196
Xiaoyu Wang is an academic researcher from Carleton University. The author has contributed to research in topics: Inverter & Islanding. The author has an hindex of 25, co-authored 93 publications receiving 2468 citations. Previous affiliations of Xiaoyu Wang include Chongqing University & Tsinghua University.
Papers
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Journal ArticleDOI
Real-Time Simulation Technologies for Power Systems Design, Testing, and Analysis
M. Omar Faruque,Thomas Strasser,Georg Lauss,Vahid Jalili-Marandi,Paul Forsyth,Christian Dufour,Venkata Dinavahi,Antonello Monti,Panos Kotsampopoulos,Juan A. Martinez,Kai Strunz,Maryam Saeedifard,Xiaoyu Wang,David Shearer,Mario Paolone +14 more
TL;DR: This task force paper summarizes the state-of-the-art real-time digital simulation concepts and technologies that are used for the analysis, design, and testing of the electric power system and its apparatus.
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Dynamic Averaged and Simplified Models for MMC-Based HVDC Transmission Systems
H. Saad,J. Peralta,S. Dennetiere,Jean Mahseredjian,Juri Jatskevich,Juan A. Martinez,Ali Davoudi,Maryam Saeedifard,Vijay K. Sood,Xiaoyu Wang,Jose M. Cano,Ali Mehrizi-Sani +11 more
TL;DR: In this paper, different types of models for efficient and accurate representation of MMC-HVDC systems are compared and the results show that the use of a specific type of model will depend on the conducted analysis and required accuracy.
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Impact of Communication Delays on Secondary Frequency Control in an Islanded Microgrid
TL;DR: Results from the Canadian urban distribution system have verified that communication delays can adversely affect the micro grid secondary frequency control, and the proposed gain scheduling approach can improve the robustness of the microgrid secondary frequency controller to communication delays.
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Enhancement of fatigue and corrosion properties of pure Ti by sandblasting
TL;DR: The peak subsurface compressive residual stress produced by sandblasting was measured by XRD to be around 480 MPa as mentioned in this paper, and three distinct regions were observed in the sandblasted samples, namely severely deformed surface layer, the region deformed mainly by twinning, and the substrate.
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Distributed Load Sharing Under False Data Injection Attack in an Inverter-Based Microgrid
TL;DR: This paper considers the distributed load sharing problem of the microgrids operating in autonomous mode under FDI, and constructs an FDI attack model, where the attacker is capable of injecting false data into the bus agents.