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New fuzzy reasoning-based high-performance speed/position servo control schemes incorporating ultrasonic motor

机译:基于超声波推理的新型基于模糊推理的高性能速度/位置伺服控制方案

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摘要

A high-performance servo control scheme using compact ultrasonic motors (USMs) as actuators has not yet been practically realized in modern industry and office automation systems because the dynamic and steady-state modeling of USMs is almost impossible from a theoretical point of view. A high-performance speed/positional servo control scheme based on modern fuzzy reasoning concepts and featuring a traveling wave-type USM with high torque at low speed range is presented. The control method of the USM servo system using inverter frequency and voltage control strategies for the speed and amplitude of the traveling wave on the USM stator and the phase difference control scheme between two-phase high-frequency inverters are demonstrated and evaluated using experimental results. In particular, the control implementation is described from a practical viewpoint.
机译:使用紧凑型超声波马达(USM)作为执行器的高性能伺服控制方案尚未在现代工业和办公自动化系统中实际实现,因为从理论角度来看,USM的动态和稳态建模几乎是不可能的。提出了一种基于现代模糊推理概念的高性能速度/位置伺服控制方案,该方案以低速范围的高转矩行波型USM为特征。通过实验结果,论证并评估了USM伺服系统的控制方法,该方法采用变频器频率和电压控制策略来控制USM定子上行波的速度和振幅,以及两相高频变频器之间的相差控制方案。特别地,从实际的角度描述控制实现。

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