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Yasser Abdel-Rady I. Mohamed

Researcher at University of Alberta

Publications -  221
Citations -  10018

Yasser Abdel-Rady I. Mohamed is an academic researcher from University of Alberta. The author has contributed to research in topics: Microgrid & Grid. The author has an hindex of 48, co-authored 206 publications receiving 8042 citations. Previous affiliations of Yasser Abdel-Rady I. Mohamed include Ryerson University & University of Waterloo.

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Adaptive Decentralized Droop Controller to Preserve Power Sharing Stability of Paralleled Inverters in Distributed Generation Microgrids

TL;DR: In this paper, an adaptive decentralized droop controller of paralleled inverter-based distributed generation (DG) units is presented to preserve the power sharing stability, which is based on the static droop characteristics combined with an adaptive transient droop function.
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Design and Implementation of a Robust Current-Control Scheme for a PMSM Vector Drive With a Simple Adaptive Disturbance Observer

TL;DR: This paper introduces a robust current-control scheme for a permanent-magnet synchronous motor (PMSM) with a simple adaptive disturbance observer that provides an efficient solution for torque-ripple minimization in PMSM drives.
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A Novel and Generalized Three-Phase Power Flow Algorithm for Islanded Microgrids Using a Newton Trust Region Method

TL;DR: In this paper, a generic three-phase power flow algorithm is formulated for islanded microgrids, where the features of distribution systems, i.e., threephase feeder models, unbalanced loads and load models have been taken in consideration.
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Supply-Adequacy-Based Optimal Construction of Microgrids in Smart Distribution Systems

TL;DR: Systematic and optimized approaches for clustering of the distribution system into a set of virtual microgrids with optimized self-adequacy are presented and the effect of the total DESRs or DRSs capacities on the design and the robustness of the algorithm are investigated.
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Optimum Microgrid Design for Enhancing Reliability and Supply-Security

TL;DR: A systematic and optimized approach for designing microgrids taking into account system reliability- and supply-security-related aspects is presented, and the effect of optimization coefficients on the design and the robustness of the algorithm are investigated using sensitivity studies.