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Annular array beamforming for 2D arrays with reduced system channels

机译:具有减少系统通道的2D阵列的环形阵列波束形成

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Annular arrays can operate with a small number of channels because the shape of the physical elements matches the acoustic phase fronts. The symmetry of the annular array provides axisymmetric focusing without the need for additional beamforming channels. An annular array structure can be constructed by connecting elements of a 2D array and therefore a similar reduction in the number of delay channels required can be achieved described by D. G. Bailey et al. and R. Bele (1987). We present simulation results for annular array apertures with a diameter of 20-26 mm and design frequency in the 5-8 MHz range. The simulations are used to determine the required number of annular rings (around 20), the effect of the size of the underlying 2D array elements (should be 200 um), and the optimal ring widths for a particular design with 20 rings (325 um). Simulations of a 20 ring design with a 26 mm aperture show that the -6 dB beamwidths are less than 0.5 mm over a depth of field from 1 to 5 cm with a single transmit focus. The azimuthal and elevation beam widths are, as expected, equivalent. Experimental measurements of the field at the focal point show good agreement with the model.
机译:环形阵列可以用少量通道运行,因为物理元素的形状与声学相位匹配。环形阵列的对称性提供轴对称聚焦,而无需额外的波束形成通道。环形阵列结构可以通过连接2D阵列的元件来构造,因此可以通过D. G.Bailey等人描述所需的延迟通道的数量类似的减少。和伦贝尔(1987年)。我们在5-8 MHz范围内显示直径为20-26毫米的环形阵列孔的仿真结果。模拟用于确定所需数量的环形环(约20),底层2D阵列元件的尺寸(应为>200μm)的效果,以及具有20个环的特定设计的最佳环形宽度(325嗯)。使用26mm孔径的20个环设计的模拟表明,-6 dB波束宽度在1至5cm的景深范围内小于0.5毫米,具有单个发射焦点。如预期的那样,方位角和高度光束宽度是等效的。焦点域的实验测量与模型吻合良好。

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