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Cursino Brandao Jacobina

Researcher at Federal University of Campina Grande

Publications -  102
Citations -  3654

Cursino Brandao Jacobina is an academic researcher from Federal University of Campina Grande. The author has contributed to research in topics: Pulse-width modulation & Converters. The author has an hindex of 27, co-authored 85 publications receiving 3413 citations. Previous affiliations of Cursino Brandao Jacobina include Federal University of Paraíba & National Polytechnic Institute of Toulouse.

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Fault detection of open-switch damage in voltage-fed PWM motor drive systems

TL;DR: In this article, the authors investigated the use of different techniques for fault detection in voltage-fed asynchronous machine drive systems, which requires the measurement of some voltages and is based on the analytical model of the voltage source inverter.
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Fault-tolerant voltage-fed PWM inverter AC motor drive systems

TL;DR: This paper shows how to integrate fault compensation strategies into two different types of configurations of induction motor drive systems by reconfiguring the power converter topology with the help of isolating and connecting devices.
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A General PWM Strategy for Four-Switch Three-Phase Inverters

TL;DR: In this article, a vector PWM method for control of four-switch three-phase inverters is presented, which selects three or four vectors that effectively synthesize the desired output voltage, even in presence of voltage oscillations across two dc-link capacitors.
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Digital scalar pulse-width modulation: a simple approach to introduce nonsinusoidal modulating waveforms

TL;DR: The introduction of the "distribution ratio" in this technique, allows the development of a systematic approach for implementing either conventional or any modified vector strategies without changing the modulator scheme.
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Current control of unbalanced electrical systems

TL;DR: Simulation and experimental results obtained with a pulsewidth modulation voltage-source inverter supplying unbalanced systems are presented, and continuous-time and discrete-time current controllers based on the vector approach are presented.