节点文献
基于霍尔传感器的低噪声推进电机驱动系统
Low-noise Propulsion Motor Drive System Based on Hall-effect Position Sensors
【摘要】 潜航器电推进系统广泛采用高效率和高功率密度的永磁同步电机,需要结合转子位置传感器实现其高性能控制。采用霍尔磁极位置传感器可以节省体积,但低分辨率的位置信号不能满足电机的高性能控制需要。基于霍尔位置信号和平均速度采用线性插值方法估算转子实时位置,用于永磁同步电机矢量控制。针对霍尔信号偏差导致估算位置在修正处发生突变的问题,通过改进平均速度计算和位置修正方法平滑位置估算值,抑制了因估算位置突变导致的电流畸变,实现了潜航器推进用永磁同步电机的低噪运行。实验结果验证了方案的可行性和有效性。
【Abstract】 The permanent magnet synchronous motor with high-efficiency and high-power density is widely used in the electric propulsion system of underwater vehicles,and the rotor position sensor is required to achieve its high performance control. The adoption of Hall-effect position sensor can save the volume,but the low-resolution position signal cannot meet the high-performance control needs of the motor. In this paper,the real-time rotor position is estimated by linear interpolation method based on Hall position signals and average speed,and used in the vector control of permanent magnetic synchronous motor. Aiming at the sudden change of the estimated position at the correction point caused by Hall signal deviation,by improving the smooth position estimation value of the average speed calculation and position correction method,the current distortion caused by the sudden change of the estimated position is suppressed,and the low-noise operation of the permanent magnet synchronous motor for propulsion of the underwater vehicles is realized. The experimental results verify the feasibility and effectiveness of this method.
【Key words】 underwater vehicle; electric propulsion; permanent magnet synchronous motor; Hall-effect sensor; low noise;
- 【文献出处】 数字海洋与水下攻防 ,Digital Ocean & Underwater Warfare , 编辑部邮箱 ,2023年01期
- 【分类号】U664.14
- 【下载频次】39