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Design of high precision motor driving system for circular scanning ultrasonic endoscopic imaging equipment

机译:圆形扫描超声内窥镜成像设备高精度电机驱动系统设计

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This paper describes the development of a motor driving system for circular scanning ultrasonic endoscopic imaging equipment. It was designed to guarantee the motor rotating at a relatively constant speed in load fluctuation conditions, which result from the bending and twisting of the flexible shaft which connects the probe to the motor. A hardware feedback circuit based on Frequency-To-Voltage Converter LM331 and Step-Down Voltage Regulator LM2576-ADJ was designed to ensure steady rotation of motor in load fluctuation conditions, and a D/A module offered by MCU was used to regulate the real-time rotary speed. The feedback response cycle is about 20 μs according to theoretical analysis. Experimental results show that the maximum error is ±1 r/min under the normal running environment (300 ~1500 r/min) and load fluctuation conditions, which means the average instability is reduced to 0.11% as compared with that of the motor drive simply based on MCU which is 0.94%. Both theoretical analysis and experimental results indicate that the motor driving system has high accuracy, fast response, excellent reliability and good versatility and portability, and can precisely guarantee the smooth movement of load-changing PMW (Pulse Width Modulation) motor, so as to ensure the imaging quality, and can effectively improve the efficiency and accuracy of the diagnosis.
机译:本文介绍了一种用于圆形扫描超声内窥镜成像设备的电机驱动系统的开发。它旨在确保在负载波动条件下电动机以相对恒定的速度旋转,这是由于将探头连接到电动机的柔性轴的弯曲和扭曲造成的。设计了基于频率-电压转换器LM331和降压稳压器LM2576-ADJ的硬件反馈电路,以确保在负载波动条件下电动机稳定旋转,并使用MCU提供的D / A模块来调节实际电流。时旋转速度。根据理论分析,反馈响应周期约为20μs。实验结果表明,在正常运行环境(300〜1500 r / min)和负载波动条件下,最大误差为±1 r / min,这意味着与简单的电动机驱动器相比,平均不稳定性降低至0.11%。基于0.94%的MCU。理论分析和实验结果均表明,该电机驱动系统具有精度高,响应速度快,可靠性高,通用性和便携性好等特点,可以准确地保证变负荷PMW(脉宽调制)电机的平稳运动,从而确保成像质量,可以有效提高诊断效率和准确性。

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