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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Fourier-bessel field calculation and tuning of a CW annular array
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Fourier-bessel field calculation and tuning of a CW annular array

机译:连续波环形阵列的傅里叶-贝塞尔场计算和调谐

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摘要

A 1-D Fourier-Bessel series method for computing and tuning the linear lossless field of flat continuous wave (CW) annular arrays is given and discussed with both numerical simulation and experimental verification. The technique provides a new method for modelling and manipulating the propagated field by linking the quantized surface pressure profile to a set of limited diffraction Bessel beams propagating into the medium. In the limit, these become a known set of nondiffracting Bessel beams satisfying the lossless linear wave equation, which allow us to derive a linear matrix formulation for the field in terms of the ring pressures on the transducer surface. Tuning (beamforming) of the field then follows by formulating a least squares design with respect to the transducer ring pressures. Results are presented in the context of a 10-ring annular array operating at 2.5 MHz in water.
机译:给出了一维傅立叶-贝塞尔级数方法,用于计算和调整平面连续波(CW)环形阵列的线性无损场,并进行了数值模拟和实验验证。通过将量化的表面压力曲线与传播到介质中的一组有限衍射贝塞尔光束相链接,该技术提供了一种用于建模和处理传播场的新方法。在极限条件下,这些成为满足无损线性波方程的一组已知的非衍射贝塞尔光束,这使我们能够根据换能器表面的环压来得出磁场的线性矩阵公式。然后,通过针对换能器环压力制定最小二乘设计来调整(波束成形)磁场。结果在水中以2.5 MHz运行的10环环形阵列的背景下给出。

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