Journal of Electrical and Electronic Engineering
Volume 6, Issue 1, February 2018, Pages: 41-49
Received: Mar. 7, 2018;
Published: Mar. 9, 2018
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Junliang Han, Shool of Mechanical and Automotive Engineering, Nanyang Institute of Technology, Nanyang, China; Henan Province Xixia Automobile Water Pump Co., Ltd., Xixia, China; College of Electrical Engineering, Zhengzhou University, Zhengzhou, China
Hui Song, Department of Central Air-conditioning, Midea Group Co., Ltd., Foshan, China
Changhong Feng, Henan Province Xixia Automobile Water Pump Co., Ltd., Xixia, China
Xiangqing Zhou, Henan Province Xixia Automobile Water Pump Co., Ltd., Xixia, China
Chuansheng Tang, Shool of Mechanical and Automotive Engineering, Nanyang Institute of Technology, Nanyang, China
Zhengyong Duan, Shool of Mechanical and Automotive Engineering, Nanyang Institute of Technology, Nanyang, China
Jinfeng Gao, College of Electrical Engineering, Zhengzhou University, Zhengzhou, China
The electronic water pump will be used more and more widely in the new energy vehicles and other special vehicles. A sensorless electronic water pump for automobile is designed and implemented with the brushless direct current motor (BLDCM) as the driving motor. A sensorless magnetic field oriented control (FOC) scheme using sliding mode observer (SMO) is applied for the motor control. A novel SMO and the phase-locked loop (PLL) for reducing the chattering phenomenon are used to estimate rotor velocity/position from the back electromotive force (EMF), in which a continuous saturation function is applied instead of the sign function. A robust I-f startup strategy is introduced. The hardware circuit design and software algorithm design are presented. The experimental system is set up and some experimental results are demonstrated. The effectiveness and correctness of the proposed hardware design and the software scheme are validated. Experimental results show that the developed electronic water pump is reasonable and feasible with a high cost performance.
Design and Implementation of Sensorless Electronic Water Pump for Automobile, Journal of Electrical and Electronic Engineering.
Vol. 6, No. 1,
2018, pp. 41-49.
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