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Quadrature Synthetic Aperture Beamforming Front-End for Miniaturized Ultrasound Imaging

机译:正交合成孔径波束成形前端,用于微型超声成像

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A quadrature synthetic aperture front-end receiver for B-mode ultrasound imaging is presented. The receiver targets small-scale imaging applications such as capsule endoscopy and low-cost portable devices. System complexity, area, power consumption, and cost are minimized using synthetic aperture beamforming (SAB), whereby signals are processed in a sequential manner using only a single channel. SAB is combined with quadrature (I/Q) sampling, which further reduces the bandwidth and computational load. I/Q demodulation is carried out using a full custom analog front-end (AFE), which comprises a low-noise, variable gain preamplifier, followed by a passive mixer, programmable gain amplifier (PGA) and active lowpass filter. A novel preamplifier design is proposed, with quasi-exponential time-gain control and low noise (5.42 nV√Hz input-referred noise). Overall, the AFE consumes 7.8 mW (static power) and occupies 1.5 mm × 1.5 mm in AMS 0.35 μm CMOS. Real-time SAB is carried out using a Spartan-6 FPGA, which dynamically apodises and focuses the data by interpolating and applying complex phase rotations to the I/Q samples. For a frame rate of 7 Hz, the power consumption is 3.4 mW/channel across an aperture of 64 elements. B-mode images were obtained using a database of ultrasound signals (2.5 MHz center frequency) derived from a commercial ultrasound machine. The normalized root mean squared error between the quadrature SAB image and the RF reference image was 13%. Image quality/frame rate may be tuned by varying the degree of spatial compounding.
机译:提出了一种用于B模式超声成像的正交合成孔径前端接收器。该接收器针对小型成像应用,例如胶囊内窥镜和低成本便携式设备。使用合成孔径波束成形(SAB)可将系统复杂性,面积,功耗和成本降至最低,从而仅使用一个通道就可以按顺序处理信号。 SAB与正交(I / Q)采样相结合,进一步降低了带宽和计算负荷。使用完全定制的模拟前端(AFE)进行I / Q解调,该前端包括一个低噪声,可变增益前置放大器,然后是一个无源混频器,可编程增益放大器(PGA)和有源低通滤波器。提出了一种新颖的前置放大器设计,具有准指数的时间增益控制和低噪声(5.42nV√Hz输入参考噪声)。总体而言,AFE消耗7.8 mW(静态功率),并且在AMS 0.35μmCMOS中占据1.5 mm×1.5 mm。实时SAB使用Spartan-6 FPGA进行,该FPGA通过对I / Q样本进行插值并将复杂的相位旋转应用于数据,动态地对数据进行聚焦和聚焦。对于7 Hz的帧速率,在64个元件的孔径上的功耗为3.4 mW /通道。使用从商用超声仪获得的超声信号(中心频率为2.5 MHz)数据库获得B模式图像。正交SAB图像和RF参考图像之间的归一化均方根误差为13%。可以通过改变空间合成的程度来调整图像质量/帧速率。

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