Journal Article

·2016

Investigating operating modes and converter options of dual winding permanent magnet synchronous machines for hybrid electric vehicles

Erkan Meşe YTU , Yusuf Yaşa YTU , Hakan Akça YTU , Mustafa Gürkan Aydeniz YTU , Muhammet Garip YTU

Abstract

Summary form only given. This paper investigates the operating modes and converter options of dual winding permanent magnet synchronous machines (DWPMSMs) that are used to drive accessories in hybrid electric vehicles. In this application, DWPMSM operate in three different modes: 1) motor-only; 2) generator-only; and 3) simultaneous motor-generator modes. Motor-only and generator-only operations can be treated independently as long as two winding sets are magnetically decoupled. Simultaneous motor-generator mode links two winding sets through a mechanical shaft. As part of this study, the impact of dual winding set usage on the machine's output and performance is also investigated. Experimental results are given for each mode. The converter options of generator winding were investigated as well. These options include uncontrolled rectifier with dc-dc converter and controlled rectifier. Two converters are compared for their impacts on efficiency and generator current harmonics. The relationship between speed and converter control variable is given for various back electromotive force constant values of the DWPMSM.

Keywords

Generator (circuit theory) Permanent magnet synchronous generator Shunt generator Rectifier (neural networks) Converters Control theory (sociology) Harmonics Computer science Dual (grammatical number) Counter-electromotive force Magnet Electromagnetic coil Electric generator Automotive engineering Electrical engineering Engineering Voltage Power (physics) Physics Control (management)

Subject Areas

Electric Motor Design and Analysis ·Electrical and Electronic Engineering ·Physical Sciences
Sensorless Control of Electric Motors ·Electrical and Electronic Engineering ·Physical Sciences
Multilevel Inverters and Converters ·Electrical and Electronic Engineering ·Physical Sciences

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