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通过阻抗匹配和 3D 打印夹具提高空气 APT 系统的性能。

Improving APT Systems' Performance in Air via Impedance Matching and 3D-Printed Clamp.

机构信息

Department of Electrical, Computer and Software Engineering, The University of Auckland, Auckland 1010, New Zealand.

出版信息

Sensors (Basel). 2023 Jun 5;23(11):5347. doi: 10.3390/s23115347.

Abstract

This paper presents a study on improving the performance of the acoustic piezoelectric transducer system in air, as the low acoustic impedance of air leads to suboptimal system performance. Impedance matching techniques can enhance the acoustic power transfer (APT) system's performance in air. This study integrates an impedance matching circuit into the Mason circuit and investigates the impact of fixed constraints on the piezoelectric transducer's sound pressure and output voltage. Additionally, this paper proposes a novel equilateral triangular peripheral clamp that is entirely 3D-printable and cost-effective. This study analyses the peripheral clamp's impedance and distance characteristics and confirms its effectiveness through consistent experimental and simulation results. The findings of this study can aid researchers and practitioners in various fields that employ APT systems to improve their performance in air.

摘要

本文研究了如何提高空气中声电换能器系统的性能,因为空气的低声阻抗会导致系统性能不佳。阻抗匹配技术可以提高空气中的声功率传输(APT)系统的性能。本研究将阻抗匹配电路集成到 Mason 电路中,并研究了固定约束对压电换能器声压和输出电压的影响。此外,本文提出了一种新颖的等边三角形周边夹具,它完全可以进行 3D 打印,且成本效益高。本研究分析了周边夹具的阻抗和距离特性,并通过一致的实验和模拟结果证实了其有效性。本研究的结果可以帮助从事使用 APT 系统的各个领域的研究人员和从业者提高其在空气中的性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6067/10255979/8e497f308cf0/sensors-23-05347-g001.jpg

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