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      Design for Motor Controller in Hybrid Electric Vehicle Based on Vector Frequency Conversion Technology

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      Mathematical Problems in Engineering
      Hindawi Limited

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          Abstract

          Motor and its control technology are one of the main components of Hybrid Electric Vehicle (HEV). To meet HEV's fast torque response, vector control algorithm based on rotor flux-oriented and simulation model is concerned and modular designs for controller's hardware and software are presented in the paper in order to build a platform to achieve the vector control of asynchronous induction motor. Analyze the controller's electromagnetic compatibility, introduce the corresponding antijamming measures to assure the normal operation of the electromagnetic sensitive devices such as CAN bus; experiment proves that the measure is practical and feasible. On the basis of the control logic correct, such as improving CAN bus communication reliability, assuring power-on sequence and fault treatment, carry on the motor bench experiment, test its static properties, and adjust the controller parameters. The experimental results show that the designed driving system has the performance of low speed and high torque, a wide range of variable speed and high comprehensive efficiency.

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          Most cited references4

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          Relationship between space-vector modulation and three-phase carrier-based PWM: a comprehensive analysis [three-phase inverters]

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            An improved inverter output filter configuration reduces common and differential modes dv/dt at the motor terminals in PWM drive systems

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              Adaptive control of a hybrid electric vehicle

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                Author and article information

                Journal
                Mathematical Problems in Engineering
                Mathematical Problems in Engineering
                Hindawi Limited
                1024-123X
                1563-5147
                2010
                2010
                : 2010
                :
                : 1-21
                Article
                10.1155/2010/627836
                d023d49e-b407-4a0c-a15f-d29b61ba72e4
                © 2010

                http://creativecommons.org/licenses/by/3.0/

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