TY - JOUR
T1 - Position Estimation Accuracy Improvement for SPMSM Sensorless Drives by Adaptive Complex-Coefficient Filter and DPLL
AU - Chen, Zhe
AU - Zhang, Xuxuan
AU - Dawara, Abd Alrahman
AU - Chen, Shouluo
AU - Zhang, Hang
AU - Luo, Guangzhao
N1 - Publisher Copyright:
© 1972-2012 IEEE.
PY - 2023/1/1
Y1 - 2023/1/1
N2 - This paper presents an improved high-frequency pulsating square-wave signal injection-based sensorless control for surface-mounted permanent-magnet synchronous machines (SPMSM). The use of low pass filter in the traditional sensorless method results in phase delay and, consequently, degrades the dynamic behavior. In order to eliminate such drawback, the proposed method adopts an adaptive complex-coefficient filter (ACCF) that does not cause phase delay and the use of compensation technique is avoided. Moreover, a dual-phase-locked loop (DPLL) is utilized to extract the accurate rotor position and eliminates the position estimation error in dynamic state. The small signal model of ACCF is build, and then the unified parameter selection guideline for both ACCF and DPLL is given in terms of comprehensive transfer function analysis. The proposed method has been carried out by both simulation and experiment, where a Higale platform with a 0.2-kW SPMSM is adopted to verify the performance of proposed method.
AB - This paper presents an improved high-frequency pulsating square-wave signal injection-based sensorless control for surface-mounted permanent-magnet synchronous machines (SPMSM). The use of low pass filter in the traditional sensorless method results in phase delay and, consequently, degrades the dynamic behavior. In order to eliminate such drawback, the proposed method adopts an adaptive complex-coefficient filter (ACCF) that does not cause phase delay and the use of compensation technique is avoided. Moreover, a dual-phase-locked loop (DPLL) is utilized to extract the accurate rotor position and eliminates the position estimation error in dynamic state. The small signal model of ACCF is build, and then the unified parameter selection guideline for both ACCF and DPLL is given in terms of comprehensive transfer function analysis. The proposed method has been carried out by both simulation and experiment, where a Higale platform with a 0.2-kW SPMSM is adopted to verify the performance of proposed method.
KW - Adaptive complex-coefficient filter (accf)
KW - Sensorless control
KW - dual-phase-locked loop (dpll)
KW - high-frequency pulsating square-wave signal injection
KW - surface-mounted permanent magnet synchronous motor (SPMSM)
UR - http://www.scopus.com/inward/record.url?scp=85137888936&partnerID=8YFLogxK
U2 - 10.1109/TIA.2022.3204956
DO - 10.1109/TIA.2022.3204956
M3 - 文章
AN - SCOPUS:85137888936
SN - 0093-9994
VL - 59
SP - 857
EP - 865
JO - IEEE Transactions on Industry Applications
JF - IEEE Transactions on Industry Applications
IS - 1
ER -