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Ultrasonic phased array device for real-time acoustic imaging in air

机译:用于空气中实时声成像的超声相控阵设备

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摘要

A real-time acoustic imaging system is developed as a prototype electronic travel aid (ETA) device. The design is implemented on a field programmable gate array (FPGA). A 6 channel transmit and 4 channel receive digital beamforming algorithm with dynamic focusing is accommodated in a FPGA. The developed system consists of a FPGA, pulser and receiver circuitry and separate transmitter and receiver arrays, which are constructed by using commercially available transducers. The transducer elements have a physical dimension of 1.9 wavelengths and a half-power beamwidth of 43° at 40.8 kHz center frequency. The transmitter array is formed by aligning the transducers with minimum spacing between the elements, which is 2 wavelengths. Obviously, more than one wavelength inter-element spacing leads to the occurrence of grating lobes in the array response and decreases the Field of View (FOV) below the half-power beamwidth of transducers. To extend the FOV and eliminate the grating lobe, the receiver array is formed with 3 wavelength inter-element spacing. The non-identical element spacing makes the grating lobes of transmitter and receiver array to appear at different places. The described placement strategy and the functionality of the system is tested with several experiments. The results of these experiments prove the grating lobe suppression capability of the applied placement strategy.
机译:实时声成像系统已开发为原型电子旅行辅助(ETA)设备。该设计在现场可编程门阵列(FPGA)上实现。 FPGA中包含具有动态聚焦功能的6通道发送和4通道接收数字波束成形算法。开发的系统由FPGA,脉冲发生器和接收器电路以及单独的发射器和接收器阵列组成,这些阵列是使用市售的传感器构造的。换能器元件的物理尺寸为1.9个波长,在40.8 kHz中心频率下的半功率波束宽度为43°。通过将换能器与元件之间的最小间距对齐,形成最小的间距,即2个波长。显然,一个以上的波长元素间距会导致阵列响应中出现光栅瓣,并使视场(FOV)降低到换能器的半功率波束宽度以下。为了扩展视场并消除光栅波瓣,接收器阵列形成了3个波长的元素间距。不同的元素间距使发送器和接收器阵列的光栅波瓣出现在不同的位置。所描述的放置策略和系统的功能通过几次实验进行了测试。这些实验的结果证明了所应用的放置策略的光栅波瓣抑制能力。

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