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JOURNAL OF ZHEJIANG UNIVERSITY (ENGINEERING SCIENCE)
    
Pefrormance analysis of holtz flux observer in speed-sensorless induction motor drive
WANG Ting, CHEN Bin, YAO Wen-xi, LV Zheng-yu
National Key Laboratory of Power Electronics, Zhejiang University, Hangzhou 310027, China
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Abstract  

For the speed-sensorless control of induction motor this work studied a kind of voltage model flux observer with good performance at low speed, which was presented by J.Holtz.   A small signal model was established based on the linearized theory. Then the relationships between the feedback factor and the observers performance, stability and dynamic response, were obtained. The influence of the input error on the flux observation was also analyzed. Considering various aspects of the observers performance, a new self-adaptive design method of  feedback factor of the observer was developed. On the Matlab-based simulation platform and Dspace-based experiment platform,  simulations and experiments for a 22 kW induction motor when the observer inputs have errors were carried out. The  results show that: when the damping coefficient is set near one or keep the feedback factor twice of the synchronous frequency, the flux observer can achieve the best effect and perform well at both high and low speed.



Published: 01 September 2014
CLC:  TM 301.2  
Cite this article:

WANG Ting, CHEN Bin, YAO Wen-xi, LV Zheng-yu. Pefrormance analysis of holtz flux observer in speed-sensorless induction motor drive. JOURNAL OF ZHEJIANG UNIVERSITY (ENGINEERING SCIENCE), 2014, 48(9): 1690-1695.

URL:

http://www.zjujournals.com/eng/10.3785/j.issn.1008-973X.2014.09.021     OR     http://www.zjujournals.com/eng/Y2014/V48/I9/1690


异步电机无速度传感器控制的Holtz型磁链观测器性能分析

针对异步电机无速度传感器控制中,电压型磁链观测器低速性能较差的问题,研究一种具有较好低速性能的电压型磁链观测器——Holtz型磁链观测器.基于线性化理论建立该观测器的小信号模型,得出观测器反馈系数与观测器稳定性和动态响应之间的关系.进一步分析观测器输入存在误差的情况下,反馈系数对磁链观测结果的影响.基于对观测器综合性能的分析,提出一种自适应的反馈系数设计方法.针对22 kW的异步电机,分别在Matlab仿真平台和基于Dspace的实验平台上进行了观测器输入存在误差的仿真和实验.结果表明:当观测器阻尼系数取在1.0附近,也即反馈系数按同步角频率的2倍取值时,可以获得最佳的观测效果,并且在高速和低速下均能获得良好的动态和稳态性能.

[1] HOLTZ J, QUAN J. Drift-and parameter-compensated flux estimator for persistent zero-stator-frequency operation of sensorless-controlled induction motors [J]. IEEE Transactions on Industry Applications,2003,39(4): 1052-1060.
[2] SHIN M H, HYUN D S, CHOE S B, et al. An improved stator flux estimation for speed sensorless stator flux orientation control of induction motors [J]. IEEE Transactions on Power Electronics,2000,15(2):312-318.
[3] IDRIS N R N, YATIM A H M. An improved stator flux estimation in steady-state operation for direct torque control of induction machines [J]. IEEE Transactions on Industry Applications,2002,38(1):110-116.
[4] HU Jun, WU Bin. New integration algorithms for estimating motor flux over a wide speed range [J]. IEEE Transactions on Power Electronics,1998,13(5):969-977.
[5] 郑征,薛秀梅.基于低通滤波器的定子磁链观测器改进研究 [J]. 电机与控制应用,2011, 38(10):42-46.
ZHENG Zheng, XUE Xiu-mei. Improvement research of stator flux observer based on low-pass filter [J]. Electric Machines and Control Application,2011,38(10):42-46.
[6] 祝龙记,王汝琳.基于直接转矩控制的高性能磁链观测与速度观测 [J]. 电机与控制学报,2004, 8(3):209-213.
ZHU Long-ji, WANG Ru-lin. High performance flux observer and speed observer of direct torque control [J]. Electric Machines and Control,2004,8(3):209-213.
[7] 贾洪平,贺益康.用于直接转矩控制的自适应正交反馈补偿磁链观测器 [J]. 浙江大学学报:工学版,2007, 41(2):278-281+289.
JIA Hong-ping, HE Yi-kang. Adaptive perpendicular flux observer with compensation feedback for direct torque control [J].Journal of Zhejiang University∶Engineering Science,2007,41(2):278-281+289.
[8] KARANAYIL B, RAHMAN M F, GRANTHAM C. An implementation of a programmable cascaded low-pass filter for a rotor flux synthesizer for an induction motor drive [J]. IEEE Transactions on Power Electronics,2004 ,19(2):257-263.
[9] WANG Yu, DENG Zhi-quan. An integration algorithm for stator flux estimation of a direct-torque-controlled electrical excitation flux-switching generator [J]. IEEE Transactions on Energy Conversion,2012 ,27(2):411-420.
[10] HE Yan-hui, WANG Yue, WU Xue-qin, et al. Speed sensorless stator-flux-oriented control of IM drive with stator resistance compensation [C] ∥Proceedings of the IEEE International Conference on Power Electronics and Motion Control. Xi’an, China:IEEE,2009:613-619.
[11] KIM J, NAM K, CHUNG J, et al. Sensorless vector control scheme for induction motors based on a stator flux estimator with quadrant error compensation rule [J]. IEEE Transactions on Industry Applications, 2003,39(2):492-503.
[12] 刘国海,卢家力,张浩. 一种感应电机定子磁场定向解耦控制方法 [J]. 江苏大学学报:自然科学版,2006, 27(6):532-535.
LIU Guo-hai, LU Jia-li, ZHANG Hao. A stator flux orientated decoupling control of induction motors [J].Journal of Jiangsu University:Natural Science Edition,2006,27(6):532-535.

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