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Kamal Al-Haddad

Researcher at École de technologie supérieure

Publications -  873
Citations -  24861

Kamal Al-Haddad is an academic researcher from École de technologie supérieure. The author has contributed to research in topics: Power factor & AC power. The author has an hindex of 61, co-authored 828 publications receiving 21017 citations. Previous affiliations of Kamal Al-Haddad include Indian Institute of Technology Delhi & École Polytechnique de Montréal.

Papers
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Journal ArticleDOI

Power Quality Enhancement of Smart Households Using a Multilevel-THSeAF With a PR Controller

TL;DR: The main significant features of the proposed topology include the great capability to correct the power factor as well as cleaning the grid simultaneously, while protecting consumers from voltage disturbances, sags, and swells during a grid perturbation.
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Large-Signal Modeling and Steady-State Analysis of a 1.5-kW Three-Phase/Switch/Level (Vienna) Rectifier With Experimental Validation

TL;DR: A large-signal modeling technique has been developed for a three-phase, three-level Vienna rectifier operating in continuous conduction mode and significantly high accordance between the experimental results and the theoretical model, implemented with SIMULINK/Matlab, is verified.
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Lyapunov-Based Model Predictive Control of a PUC7 Grid-Connected Multilevel Inverter

TL;DR: Simulation and experimental tests demonstrate the excellent performance of the proposed Lyapunov-based model predictive controller for a 7-level packed U-cell (PUC7) grid-connected inverter, in terms of high disturbance rejection, robustness to parameter mismatches, and fast dynamic response.
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Indirect Matrix Converters' Enhanced Commutation Method

TL;DR: It has been shown through experimental results that a substantial improvement of line current total harmonic distortion is achieved and the grid-side converter devices to commutate at zero current with larger time interval widths provided for this safe commutation.
Proceedings ArticleDOI

Comparison of fuzzy logic and proportional integral controller of voltage source active filter compensating current harmonics and power factor

TL;DR: The obtained results show the fuzzy logic controller is performing much better than the PI controller over a wide operating range.