Abstract:In the speed sensorless vector control system of induction machine, accurate flux and speed information is very important. In this paper, the closed-loop flux observer which combines voltage model and current model is improved. It can obtain accurate magnitude and angle of the rotor flux and it can run in generating mode without speed information. On the basis of model reference adaptive system(MRAS) theory, it realizes the estimation of motor speed with the improved closed-loop flux observer as the reference model and current model as the adaptive model. Finally, the improved flux observer is used in a rotor field oriented vector control system and the feasibility of the proposed scheme is verified on the DSP experiment platform.
陆文斌, 姚文熙, 吕征宇. 基于改进闭环磁链观测器的感应电机无速度矢量控制[J]. 电工技术学报, 2013, 28(3): 148-153.
Lu Wenbin, Yao Wenxi, Lü Zhengyu. Speed Sensorless Vector Control with Improved Closed-Loop Flux Observer for Induction Machines. Transactions of China Electrotechnical Society, 2013, 28(3): 148-153.
[1] 张春喜, 廖文建, 王佳子. 异步电机SVPWM矢量控制仿真研究[J]. 电机与控制学报, 2008, 12(2): 160-163. Zhang Chunxi, Liao Wenjian, Wang Jiazi. Simulation snalysis in SVPWM vector control for asynchronous motor[J]. Electric Machine and Control, 2008, 12(2): 160-163. [2] 杨光明, 王志飞. 异步电动机矢量控制系统的仿真研究[J]. 船电技术, 2009, 29(8): 27-31. Yang Guangming, Wang Zhifei. Simulation of vector control system for asynchronous motor[J]. Marine Electric & Electronic Enginerring, 2009, 29(8): 27-31. [3] 冯垛生. 交流调速系统[M]. 北京: 机械工业出版社, 2008. [4] Colin Schauder. Adaptive speed identification for vector control of induction motors without rotational transducers[J]. IEEE Transactions on Industry Application, 1992, 30(5): 1054-1061. [5] Jansen P L, Lorenz R D. A physically insightful approach to the design and accuracy assessment of flux observers for field oriented Induction machine drives[J]. IEEE Transactions Industry Application, 1994, 30(1): 101-110. [6] Bensiali N, Chaigne C, Tnani S, et al. Optimal observer design for sensorless control of induction motor in regenerating-mode [C]. International Symposium on Power Electronics, Electrical Drives, Automation and Motion, 2006: 996-1001. [7] Jafarifar M, Kianinezhad R, Seifossadat S G, et al. Sliding mode and disturbance observer: two viable schemes for sensorless control of induction machines[C]. 4th IEEE Conference on Industrial Electronics and Applications, 2009: 2329-2334. [8] Lascu C, Boldea I, Blaabjerg F. A class of speed- sensorless sliding-mode observers for high-performance induction motor drives[J]. IEEE Transactions on Industry Application, 2009, 56(9): 3394-3403. [9] Zhang Wei, Luo Jianjun. Speed and rotor flux estimation of induction motors based on extended kalman filter[C]. Sixth International Conference on Networked Computing and Advanced Information Management (NCM), 2010 : 157-160. [10] Cristian Lascu, Ion Boldea, Frede Blaabjerg. A modified direct torque control for induction motor sensorless drive[J]. IEEE Transactions on Industry Application, 2000, 36(1): 122-130. [11] 周亚丽, 李永东, 郑泽东. 基于MRAS的感应电机无速度传感器矢量控制[J]. 电气传动, 2009, 39(4): 3-8. Zhang Yali, Li Yongdong, Zheng Zedong. Speed sensorless vector control of induction motor based on the model reference adaptive system[J]. Electric Drive, 2009, 39(4): 3-8. [12] 祝龙记, 王宾. 基于MRAS速度辨识矢量控制系统的仿真研究[J]. 电工技术学报, 2005, 20(1): 60-65. Zhu Longji, Wang Bin. Simulation research on vector control system using MRAS speed identification[J]. Transactions of China Electrotechnical Society, 2005, 20(1): 60-65.