TY - JOUR
T1 - Elimination of Low-speed Vibration in Vector-controlled Permanent Magnet Synchronous Motor by Real-time Adjusted Extended Kalman Filter
AU - Xu, Dong
AU - Liu, Jingmeng
AU - Zhang, Shaoguang
AU - Wei, Hongxing
N1 - Publisher Copyright:
© 2015 Taylor & Francis Group, LLC.
PY - 2015/12/14
Y1 - 2015/12/14
N2 - The inaccuracy and delay of speed feedback cause a vibration problem when the permanent magnet synchronous motor runs at low speed. As the low-speed smoothness is a key point of many applications of the permanent magnet synchronous motor, this article solves this problem by adding a real-time adjusted extended Kalman filter to low-precision-sensor vector control. In the mathematical model, the estimated speed of the extended kalman filter is significantly impacted by the deviations of the resistance and magnetic flux rather than other parameters. Thus, under id = 0 vector control, a Rs-ψf-identifier is designed to calculate the values of the resistance and flux simultaneously with a small compensating id. This algorithm runs on the platform in real time. Finally, the experiment results validate that when the velocity reaches as low as 1 r/min, the proposed method eliminates the vibration problem in the low-precision-sensor permanent magnet synchronous motor.
AB - The inaccuracy and delay of speed feedback cause a vibration problem when the permanent magnet synchronous motor runs at low speed. As the low-speed smoothness is a key point of many applications of the permanent magnet synchronous motor, this article solves this problem by adding a real-time adjusted extended Kalman filter to low-precision-sensor vector control. In the mathematical model, the estimated speed of the extended kalman filter is significantly impacted by the deviations of the resistance and magnetic flux rather than other parameters. Thus, under id = 0 vector control, a Rs-ψf-identifier is designed to calculate the values of the resistance and flux simultaneously with a small compensating id. This algorithm runs on the platform in real time. Finally, the experiment results validate that when the velocity reaches as low as 1 r/min, the proposed method eliminates the vibration problem in the low-precision-sensor permanent magnet synchronous motor.
KW - extended kalman filter
KW - identifier
KW - low speed
KW - low-precision sensor
KW - model adjust
KW - permanent magnet synchronous motor
UR - https://www.scopus.com/pages/publications/84947017040
U2 - 10.1080/15325008.2015.1081995
DO - 10.1080/15325008.2015.1081995
M3 - 文章
AN - SCOPUS:84947017040
SN - 1532-5008
VL - 43
SP - 2276
EP - 2287
JO - Electric Power Components and Systems
JF - Electric Power Components and Systems
IS - 20
ER -