An Outer Voltage-Loop Flux-Weakening Control Based on Over-Modulation of the Permanent Magnet Synchronous Motor

Researched on the permanent magnet synchronous motor (PMSM) for the electric-drive tracked bulldozer, an outer voltage-loop flux-weakening control strategy based on over-modulation, which is an organic combination of the traditional outer voltage-loop flux-weakening control and over-modulation algor...

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Vydáno v:2015 International Conference on Computer Science and Mechanical Automation (CSMA) s. 285 - 291
Hlavní autoři: Jiakun Lin, Qunzhang Tu, Xia Feng, Kejun Duan
Médium: Konferenční příspěvek
Jazyk:angličtina
Vydáno: IEEE 01.10.2015
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Abstract Researched on the permanent magnet synchronous motor (PMSM) for the electric-drive tracked bulldozer, an outer voltage-loop flux-weakening control strategy based on over-modulation, which is an organic combination of the traditional outer voltage-loop flux-weakening control and over-modulation algorithm, is presented in this paper. The simulation and the experiment of the control strategy are carried out. Compared to the general flux-weakening control strategy, this strategy can make the DC bus voltage be fully utilized, so that the motor can be maintained at the maximum linear modulation under the steady-state condition. The responsiveness of the motor is realized to improve effectively, and the efficiency of the motor control system is maintained in a high range. The feasibility of the strategy is verified through comparison. This paper provides the basis for the study of the high-performance control of the PMSM for the electric-drive tracked bulldozer.
AbstractList Researched on the permanent magnet synchronous motor (PMSM) for the electric-drive tracked bulldozer, an outer voltage-loop flux-weakening control strategy based on over-modulation, which is an organic combination of the traditional outer voltage-loop flux-weakening control and over-modulation algorithm, is presented in this paper. The simulation and the experiment of the control strategy are carried out. Compared to the general flux-weakening control strategy, this strategy can make the DC bus voltage be fully utilized, so that the motor can be maintained at the maximum linear modulation under the steady-state condition. The responsiveness of the motor is realized to improve effectively, and the efficiency of the motor control system is maintained in a high range. The feasibility of the strategy is verified through comparison. This paper provides the basis for the study of the high-performance control of the PMSM for the electric-drive tracked bulldozer.
Author Qunzhang Tu
Xia Feng
Jiakun Lin
Kejun Duan
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  surname: Qunzhang Tu
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  surname: Xia Feng
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  organization: Coll. of Field Eng., PLA Univ. of Sci. & Tech., Nanjing, China
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  surname: Kejun Duan
  fullname: Kejun Duan
  email: 896851927@qq.com
  organization: Coll. of Field Eng., PLA Univ. of Sci. & Tech., Nanjing, China
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Snippet Researched on the permanent magnet synchronous motor (PMSM) for the electric-drive tracked bulldozer, an outer voltage-loop flux-weakening control strategy...
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StartPage 285
SubjectTerms experiment
flux-weakening control
outer voltage-loop
over-modulation
Permanent magnet motors
permanent magnet synchronous motor
simulation
Space vector pulse width modulation
Synchronous motors
Torque
Voltage control
Title An Outer Voltage-Loop Flux-Weakening Control Based on Over-Modulation of the Permanent Magnet Synchronous Motor
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