Academic literature on the topic '4-quadrant chopper'

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Journal articles on the topic "4-quadrant chopper"

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Abdelfatah, Magdy Saoudi, Parmal Singh Solanki, and Sasidharan Sreedharan. "Design and implementation of 4-quadrant chopper for speed control of EVs and regenerative braking analysis." International Journal of Power Electronics and Drive Systems 16, no. 1 (2025): 407–17. https://doi.org/10.11591/ijpeds.v16.i1.pp407-417.

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This paper presents a novel 4-quadrant chopper design for controlling the speed of electric vehicles, featuring a regenerative braking mechanism to improve energy efficiency. Regenerative braking recovers energy during deceleration by converting kinetic energy into electrical energy stored in the battery. This process activates automatically when the accelerator pedal is released, slowing the vehicle while reducing reliance on mechanical brakes, which remain available for emergency situations. The system’s voltage control is achieved using a pulse-width modulation (PWM) technique that ad
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Abdelfatah, Magdy Saoudi, Parmal Singh Solanki, and Sasidharan Sreedharan. "Design and implementation of 4-quadrant chopper for speed control of EVs and regenerative braking analysis." International Journal of Power Electronics and Drive Systems (IJPEDS) 16, no. 1 (2025): 407. https://doi.org/10.11591/ijpeds.v16.i1.pp407-417.

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This paper presents a novel 4-quadrant chopper design for controlling the speed of electric vehicles, featuring a regenerative braking mechanism to improve energy efficiency. Regenerative braking recovers energy during deceleration by converting kinetic energy into electrical energy stored in the battery. This process activates automatically when the accelerator pedal is released, slowing the vehicle while reducing reliance on mechanical brakes, which remain available for emergency situations. The system’s voltage control is achieved using a pulse-width modulation (PWM) technique that adjusts
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3

Bouradi, Sarah, Karim Negadi, Rabah Araria, Bachir Boumediene, and Mostefa Koulali. "Design and Implementation of a Four-Quadrant DC-DC Converter Based Adaptive Fuzzy Control for Electric Vehicle Application." Mathematical Modelling of Engineering Problems 9, no. 3 (2022): 721–30. http://dx.doi.org/10.18280/mmep.090319.

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Electric vehicles (EVs) provide an excellent opportunity for limiting the emission of a variety of environmentally hazardous gases caused by gasoline and diesel-based vehicles. These propelled vehicles require a forward and backward motion as well as a variable speed operation. Hence, the use of a four-quadrant (4-Q) direct current (DC) converter becomes a necessity. This paper aims to analyse the traction system of an electric automobile along with the improvement of energy efficiency. Inserting a bi-directional DC-DC converter between the battery and the four quadrant-DC chopper assembly all
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Waseah, Anjum, Panda Sudeekshya, and Ramasamy Palanisamy. "Design of semi-Z source inverter topology with reduced number switches for four quadrant control of direct current motor." 13 13, no. 1 (2022): 102–12. https://doi.org/10.11591/ijpeds.v13.i1.pp102-112.

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This paper proposes a novel approach to 4-quadrant speed control of a direct current (DC) motor based on the use of a semi-Z source inverter which has 2 active switches and 2 switching states. The semi-Z source inverter topology is analyzed for design purposes and results and relationships are discussed. The objective of this simulation is to design and analyze the performance of closed loop speed control of a DC motor using a semi-Z source inverter under realistic operating conditions. The findings of this project can be useful for designing several household appliances as well as systems lik
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Dissertations / Theses on the topic "4-quadrant chopper"

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Abida, Ahmed. "Implémentation et réalisation d'un amplificateur de puissance quatre quadrants." Thèse, 2021. http://depot-e.uqtr.ca/id/eprint/9679/1/eprint9679.pdf.

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