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Optimal Voltage Vector Selection Method for Torque Ripple Reduction in the Direct Torque Control of Five-phase Induction Motors

Authors
Kang, Seong-YunShin, Hye UngPark, Sung-MinLee, Kyo-Beum
Issue Date
Sep-2017
Publisher
KOREAN INST POWER ELECTRONICS
Keywords
Five-phase inverter; Induction motor; Switching selection method; Voltage vector
Citation
JOURNAL OF POWER ELECTRONICS, v.17, no.5, pp.1203 - 1210
Journal Title
JOURNAL OF POWER ELECTRONICS
Volume
17
Number
5
Start Page
1203
End Page
1210
URI
https://scholarworks.bwise.kr/hongik/handle/2020.sw.hongik/5342
DOI
10.6113/JPE.2017.17.5.1203
ISSN
1598-2092
Abstract
This paper presents an improved switching selection method for the direct torque control (DTC) of five-phase induction motors (Mils). The proposed method is conducted using optimal switching selection. A five-phase inverter has 32 voltage vectors which are divided into 30 nonzero voltage vectors and two zero voltage vectors. The magnitudes of the voltage vectors consist of large, medium, and small voltage vectors. In addition, these vectors are related to the torque response and torque ripple. When a large voltage vector is selected in a drive system, the torque response time decreases with an increased torque ripple. On the other hand, when a small voltage vector is selected, the torque response time and torque ripple increase. As a result, this paper proposes an optimal voltage vector selection method for improved DTC of a five-phase induction machine depending on the situation. Simulation and experimental results verify the effectiveness of the proposed control algorithm.
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