Mohammad Ebrahim Zarei
IMDEA
28 Papers
63 Citations
Mohammad Ebrahim Zarei is an academic researcher from IMDEA. The author has contributed to research in topics: Model predictive control & Computer science. The author has an hindex of 7, co-authored 26 publications. Previous affiliations of Mohammad Ebrahim Zarei include University of Tehran & Technical University of Madrid.
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Papers
Three-Phase Four-Switch Converter for SPMS Generators Based on Model Predictive Current Control for Wave Energy Applications
TL;DR: The proposed MPCC for TPFSC follows the current references with great accuracy, whereas the switching frequency of the insulated-gate bipolar transistor (IGBTs) is fixed and low, and its fast response makes it suitable for the power take-off systems present in wave energy converters.
Fast Model-based Predictive Control (FMPC) for grid connected Modular Multilevel Converters (MMC)
TL;DR: A fast MPC, designed to control the active and reactive powers exchanged by a grid-connected MMC, providing a fast dynamic response, low current THD and constant switching frequency is presented.
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Four-Switch Three-Phase Operation of Grid-Side Converter of Doubly Fed Induction Generator With Three Vectors Predictive Direct Power Control Strategy
TL;DR: The simulation and experimental results of the proposed predictive strategy show that it is capable to suppress the dc-link voltage offset, featuring balanced currents and a fast dynamic response while the GSC current total harmonic distortion is low.
32
Model Predictive Control for PMSG-Based Wind Turbines With Overmodulation and Adjustable Dynamic Response Time
TL;DR: An improved model-based predictive current control for a surface permanent magnet synchronous generator (SPMSG), where the dynamic response time can be adjusted according to the characteristics of the application and that can operate in the overmodulation region.
21
Predictive direct torque control of DFIG under unbalanced and distorted stator voltage conditions
Mohammad Ebrahim Zarei,Behzad Asaei +1 more
- 05 May 2013
TL;DR: In this paper, performance of predictive direct torque control (PDTC) of DFIG under unbalanced and distorted grid voltage is investigated, and two different control targets can be applied to these voltage conditions without extracting the negative sequence voltage, 5th or 7th voltage harmonics.
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