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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Element shape design of 2-D CMUT arrays for reducing grating lobes
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Element shape design of 2-D CMUT arrays for reducing grating lobes

机译:用于减少光栅波瓣的二维CMUT阵列的元件形状设计

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摘要

Fully populated two-dimensional (2-D) arrays are needed to produce high quality ultrasonic volumetric images for real-time applications, but they present many challenges for their physical realization because of the large number of elements. In fact, lambda/2 and lambda minimum spacing between elements is required, respectively, for pyramidal and rectilinear scanning in order to avoid unwanted grating lobes (GLs). However, in past years, capacitive micromachined ultrasonic transducer (CMUT) technology has made possible the production of arrays with large flexibility in element shape and size. In this paper, this property is analyzed, and a new element shape, based on the concept of spatial interpenetration of adjacent elements, is proposed in order to design fully populated 2-D CMUT arrays, with a low number of elements, whose beam characteristics are valid for volumetric imaging. Through the use of simulations, it is demonstrated that arrays with pitch larger than lambda (up to 3 lambda) used for rectilinear scanning, have notably lower GLs than the equivalent standard arrays designed according to the classical squared element shape. As consequence, the proposed geometry has the advantage of reducing the number of elements (up to a factor of 9) and of enlarging the element size, implying an increase of the SNR relative to the single element. When beam steering is required, arrays can be designed with pitch equal to lambda, reducing the number of elements by a factor of 4 if the maximum steering angle is limited to plusmn15deg.
机译:需要全填充的二维(2-D)阵列来生成用于实时应用的高质量超声体积图像,但是由于元素数量众多,它们在物理实现上面临许多挑战。实际上,金字塔和直线扫描分别需要元素之间的λ/ 2和λ最小间距,以避免不必要的光栅波瓣(GL)。但是,在过去的几年中,电容性微机械超声换能器(CMUT)技术使得生产具有在元件形状和尺寸上具有很大灵活性的阵列成为可能。在本文中,对这种特性进行了分析,并基于相邻元素的空间互穿性概念,提出了一种新的元素形状,以设计具有少量元素且光束特性良好的全填充二维CMUT阵列对体积成像有效。通过使用仿真,可以证明间距大于用于线性扫描的λ(最多3λ)的阵列的GL显着低于根据经典平方元素形状设计的等效标准阵列。结果,所提出的几何结构具有减少元素数量(最高达9倍)和扩大元素尺寸的优点,这意味着相对于单个元素,SNR有所增加。当需要光束转向时,可以设计间距等于λ的阵列,如果最大转向角限制为plusmn15deg,则将元素数量减少4倍。

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