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分流式压电换能器的频率调谐与自动频率跟踪

Frequency tuning and automatic frequency tracking of shunted piezoelectric transducers.

作者信息

Ma Shujun, Zhang Yanhao, Zhuang Xin, Wang Dezhao, Chen Siyan, Liu Hui

机构信息

School of Mechanical Engineering and Automation, Northeastern University, Shenyang 110819, PR China.

School of Mechanical Engineering and Automation, Northeastern University, Shenyang 110819, PR China.

出版信息

Ultrasonics. 2024 Jul;141:107318. doi: 10.1016/j.ultras.2024.107318. Epub 2024 Apr 17.

Abstract

Piezoelectric ultrasonic transducers, vital in medical devices and aerospace, often face challenges like resonant frequency shifts and impedance variations affecting their operational efficiency. This paper introduces a shunted piezoelectric transducer which could tune itself by digitally programmable inductance. A transformer and inductance-capacitance matching network ensures enhanced compatibility and impedance management. Proposing a fuzzy PI-based phase control method achieves resonant frequency tracking, synchronizing operational frequency with the transducer. In contrast to traditional methods, our approach enables faster and more precise fine-tuning, detecting and rectifying real-world deviations for optimal performance. A comprehensive experimental validation, based on fundamental knowledge analysis, confirms the feasibility and superiority of our proposed method, and the commonly encountered issues of resonance frequency deviation and impedance variation in high-power piezoelectric transducer applications can be effectively mitigated.

摘要

压电超声换能器在医疗设备和航空航天领域至关重要,但常常面临诸如共振频率偏移和阻抗变化等挑战,这些会影响其运行效率。本文介绍了一种可通过数字可编程电感进行自调谐的并联压电换能器。一个变压器和电感 - 电容匹配网络可确保增强兼容性和阻抗管理。提出的基于模糊PI的相位控制方法实现了共振频率跟踪,使运行频率与换能器同步。与传统方法相比,我们的方法能够实现更快、更精确的微调,检测并纠正实际偏差以实现最佳性能。基于基础知识分析的全面实验验证证实了我们所提方法的可行性和优越性,并且可以有效缓解大功率压电换能器应用中常见的共振频率偏差和阻抗变化问题。

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