2015Unpublished venueRequires access

CONTROL TRENDS IN ELECTRIC VEHICLE DRIVE SYSTEMS

L. N. Modran

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Abstract

Abstract: This paper deals with electric vehicle propulsion system composed of: drive system and battery. The drive system is sensorless vector control of induction motor in rotor coordinates. Consequently a speed and resistance estimator using the induction motor model is studied. Rotor-field oriented control is made using a reduced order robust-adaptive flux observer. The drive control algorithm is implemented on a digital signal processor. The lead-acid battery manages the charge-discharge according to its voltage via microcontroller. 1.

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What this paper is about

Abstract: This paper deals with electric vehicle propulsion system composed of: drive system and battery. The drive system is sensorless vector control of induction motor in rotor coordinates. Consequently a speed and resistance estimator using the induction motor model is studied. Rotor-field oriented control is made using a reduced order robust-adaptive flux observer. The drive control algorithm is implemented on a digital signal processor. The lead-acid battery manages the charge-discharge according to its voltage via microcontroller. 1.

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Available abstract

Abstract: This paper deals with electric vehicle propulsion system composed of: drive system and battery. The drive system is sensorless vector control of induction motor in rotor coordinates. Consequently a speed and resistance estimator using the induction motor model is studied. Rotor-field oriented control is made using a reduced order robust-adaptive flux observer. The drive control algorithm is implemented on a digital signal processor. The lead-acid battery manages the charge-discharge according to its voltage via microcontroller. 1.

Key concepts: Vector control, Control theory (sociology), Induction motor, Electric vehicle, Observer (physics), Engineering, Control system, Electrically powered spacecraft propulsion

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