Jiang Chunrong, Cheng Sunan, Shen Zhan, Jin Long
School of Electric Power Engineering, Nanjing Institute of Technology, Nanjing 211167, China.
Jiangsu Collaborative Innovation Center for Smart Distribution Network, Nanjing 211167, China.
Rev Sci Instrum. 2024 Jan 1;95(1). doi: 10.1063/5.0180662.
Impedance matching circuits are capable of tuning and wave filtering, which is beneficial to performance improvement of piezoelectric ultrasonic motors. At present, impedance matching for piezoelectric ultrasonic motors is usually realized through a series inductance, which has the problem of poor wave filtering effect. Different from the previous series inductance matching method for ultrasonic motors, a series inductance and capacitance matching method is proposed for a radial standing wave piezoelectric ultrasonic motor. The series capacitance is added to adjust the quality factor of the resonance tank so that a desired wave filtering effect can be obtained. The values of the series inductance and capacitance are derived based on the Butterworth-Van Dyke model of the piezoelectric ultrasonic motor. Simulations are conducted to verify the feasibility of the proposed matching method. Finally, the waveforms of voltages and currents as well as torque-speed curves of the motor are measured. The results validate the proposed matching method. In addition, the previous series inductance matching method is compared. The results show that the proposed series inductance and capacitance matching method not only achieves tuning function but also obtains a significantly improved wave filtering effect. Moreover, the torque-speed characteristics of the motor are also improved with the proposed matching method.
阻抗匹配电路具有调谐和滤波功能,这有利于提高压电超声电机的性能。目前,压电超声电机的阻抗匹配通常通过串联电感来实现,存在滤波效果不佳的问题。与以往超声电机的串联电感匹配方法不同,本文针对径向驻波压电超声电机提出了一种串联电感和电容的匹配方法。通过增加串联电容来调整谐振回路的品质因数,从而获得理想的滤波效果。基于压电超声电机的巴特沃斯-范戴克模型推导了串联电感和电容的值。通过仿真验证了所提匹配方法的可行性。最后,测量了电机的电压和电流波形以及转矩-速度曲线。结果验证了所提匹配方法的有效性。此外,还与以往的串联电感匹配方法进行了比较。结果表明,所提串联电感和电容匹配方法不仅实现了调谐功能,而且滤波效果得到显著改善。此外,所提匹配方法还改善了电机的转矩-速度特性。