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Indirect rotor position detection method based on angular admittance modulation of optimally designed piezoelectric ultrasonic motors

机译:基于可比角度耐泌电超声电动机的角度导纳调制的间接转子位置检测方法

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This paper addresses the design of a door lock mechanism actuated by a rotary ultrasonic motor featuring a sensorless rotor position detection method based on angular admittance modulation. Electronic door lock cylinders need some sort of mechanical actuator to toggle the locking state between open and closed. The main requirements are high security standards, low power consumption, reasonable production costs, and facile integration of the actuator into the mechatronic system. A piezoelectric ultrasonic motor (PUM) was singled out to respond best to these challenges. After the development of an integration concept, a design of experiments based optimisation methodology is used to design an optimal stator for the PUM. Resonance matching is realised with a LLCC resonant converter and a resonance frequency tracking controller allows for following the ideal working point. A direct digital synthesis (DDS) based drive signal regulator allows for reducing the overall size of drive and control electronics. The locking position is detected indirectly by a motional admittance modulation (MAM) method, obviating the need for a position sensor.
机译:本文解决了由旋转超声波电动机驱动的门锁机构的设计,其具有基于角度导纳调制的无传感器转子位置检测方法。电子门锁圆筒需要某种机械执行器可在打开和关闭之间切换锁定状态。主要要求是高安全标准,低功耗,合理的生产成本,并将执行器集成到机电系统中。一款压电超声波电机(PUM)被单独响应这些挑战。在开发集成概念之后,基于实验的优化方法的设计用于设计用于PUM的最佳定子。使用LLCC谐振转换器和谐振频率跟踪控制器实现共振匹配,允许遵循理想的工作点。基于直接数字合成(DDS)的驱动信号调节器允许降低驱动器和控制电子设备的整体尺寸。通过运动导纳调制(MAM)方法间接检测锁定位置,避免了对位置传感器的需要。

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