Affiliation of Author(s):自动化学院
Journal:IEEE TRANSACTIONS ON INDUSTRIAL ELECTRONICS
Key Words:Asynchronous demodulation strategy brushless synchronous machine (BSM) initial rotor position detection sensorless controlled starting
Abstract:This paper proposes an integrated method of three-phase ac excitation and high-frequency voltage signal injection (HFVSI) for sensorless controlled starting of brushless synchronous machines (BSM) used as starter/generator in variable frequency ac power systems of civil aircraft. Fixed 400 Hz of the three-phase ac power is adopted both for the ac excitation and HFVSI in the initial starting process to eliminate the bulky rotor position sensor for BSM. The resulting 6th sequence harmonic voltage determined by the rotating rectifier is utilized as the HFVSI into the field-winding of main generator without any extra high-frequency signal injection. The rotor position is estimated by the high-frequency response signals extracted from the armature windings of main generator. Due to the nonlinear rotating rectifier linked in the HFSI chain, a novel frequency-insensitive asynchronous demodulation strategy is proposed in this paper for rotor position estimation. Furthermore, the initial rotor position detection is calibrated by polarity decision of the induced currents of the armature windings within the establishment procedure of field current of the main generator at standstill. The effectiveness of the ac excitation and feasibility of rotor position estimation for sensorless starting control of BSM are validated by the simulation and experimental results.
ISSN No.:0278-0046
Translation or Not:no
Date of Publication:2019-07-01
Co-author:F70205136,Bo Zhou,Zhang Zhuoran,Gerada, Chris
Correspondence Author:Jiadan Wei
Professor
Supervisor of Doctorate Candidates
Main positions:IEEE Senior Member
Gender:Male
Alma Mater:南京航空航天大学
Education Level:南京航空航天大学
Degree:Doctoral Degree in Engineering
School/Department:College of Automation Engineering
Discipline:能源动力. Electrical Machines and Apparatus. Power Electronics and Transmission
Business Address:南京航空航天大学江宁校区东区自动化学院电气楼406房间
Contact Information:Email: weijiadan@nuaa.edu.cn 13913861813
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