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Research on Sound Field Measurement Method of Focusing Transducer Based on Near-field Acoustic Holography |
LIU Hai-nan, ZHAO Peng, YE Xiao-tong, WANG Yue-bing |
College of Metrology and Measurement Engineering,China Jiliang University,Hangzhou, Zhejiang 310018, China |
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Abstract High-intensity focused ultrasound (HIFU)is widely used in the medical field, but the intensity at the focus of the focused transducer is relatively large, and direct measurement is likely to cause damage to the hydrophone. In order to obtain the sound pressure at the focus indirectly, the holographic measurement surface is approximately equivalent to the sound source surface and combined with the space Fourier transform algorithm, a high-efficiency focused transducer sound field measurement method is proposed. The spherical self-focused transducer is used as the object to carry out simulation research and experimental verification of the sound field measurement method. The results show that the proposed method is twice as efficient as the integral method and the measurement error is kept within the effective range. This method can be effectively used for the focused transducer sound field measurement.
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Received: 18 December 2019
Published: 23 June 2021
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[1]何碧霞. 二维阵列高强度聚焦超声探头的研制[D]. 深圳: 深圳大学, 2016.
[2] 谢露, 白景峰, 陈亚珠. 新型相控聚焦超声声场测量实验研究[J]. 中国医学物理学杂志, 2009, 26 (5): 1434-1437.
Xie L, Bai J F, Chen Y Z. Experimental study on new phase-controlled focused ultrasound sound field measurement[J]. Chinese Journal of Medical Physics, 2009, 26 (5): 1434-1437.
[3] 蒋伟康, 万泉. 近场声全息理论与应用的研究现状与展望[J]. 机械强度, 2005,(3): 288-295.
Jiang W K, Wan Q. Research Status and Prospect of Near Field Acoustic Holography [J]. Journal of Mecha-nical Strength, 2005,(3): 288-295.
[4] Williams E G, Maynard J D. Numerical evaluation of the Rayleigh integral for planar radiators using the FFT[J]. Journal of the Acoustical Society of America, 1982, 72 (6): 2020-2030.
[5] 袁文俊. 由近场测量数据推算换能器的远场特性—具体推算式与实施技术 [J]. 声学与电子工程, 1987, (3): 13-20+49.
[6] 熊久鹏, 王月兵, 赵鹏. 一种高频换能器的声场推算方法[J]. 计量学报, 2018, 39 (5): 1-4.
Xiong J P, Wang Y B, Zhao P. A sound field estimation method for high frequency transducers [J]. Acta Metrologica Sinica, 2018, 39 (5): 1-4.
[7] 靳建嘉. 基于亥姆霍兹积分法的低频换能器校准方法研究[C]//中国声学学会水声学分会2011年全国水声学学术会议论文集, 中国声学学会水声学分会, 2011.
[8] 王成, 郑慧峰, 王月兵, 等. 基于近场测量法的水声换能器声场重建方法研究[J]. 计量学报, 2016, 37 (5): 520-524.
Wang C, Zheng H F, Wang Y B, et al. Study on sound field reconstruction method of underwater acoustic transd-ucer based on near-field measurement method[J]. Acta Metrologica Sinica, 2016, 37 (5): 520-524.
[9] Williams E G. Fourier acoustics: Sound radiation and nearfield acoustical holography[M]. London, Academic Press, 1999.
[10] 付丽媛, 李发琪. 高强度聚焦超声换能器[J]. 生物医学工程学杂志, 2009, 26 (3): 667-670.
Fu L Y, Li F X. High Intensity Focused Ultrasound Transducer[J]. Journal of Biomedical Engineering, 2009, 26 (3): 667-670.
[11] 程建政, 周玉禄, 毛彦欣, 等. 基于瑞利积分叠加法的聚焦换能器声场特性研究[J]. 计算物理, 2008, (4): 493-498.
Cheng J Z, Zhou Y L, Mao Y X, et al. Study on Sound Field Characteristics of Focusing Transducer Based on Rayleigh Integral Superposition Method[J]. Chinese Jou-rnal of Computational Physics, 2008, (4): 493-498.
[12] 徐亮, 毕传兴, 陈心昭. 加权范数外推方法在声压和质点振速场外推中的性能研究[C]//全国振动理论及应用学术会议, 中国, 南京, 2011. |
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