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Compact FPGA-based beamformer using oversampled 1-bit A/D converters

机译:基于FPGA的紧凑型波束形成器,使用过采样的1位A / D转换器

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摘要

A compact medical ultrasound beamformer architecture that uses oversampled 1-bit analog-to-digital (A/D) converters is presented. Sparse sample processing is used, as the echo signal for the image lines is reconstructed in 512 equidistant focal points along the line through its in-phase and quadrature components. That information is sufficient for presenting a B-mode image and creating a color flow map. The high sampling rate provides the necessary delay resolution for the focusing. The low channel data width (1-bit) makes it possible to construct a compact beamformer logic. The signal reconstruction is done using finite impulse response (FIR) filters, applied on selected bit sequences of the delta-sigma modulator output stream. The approach allows for a multichannel beamformer to fit in a single field programmable gate array (FPGA) device. A 32-channel beamformer is estimated to occupy 50% of the available logic resources in a commercially available midrange FPGA, and to be able to operate at 129 MHz. Simulation of the architecture at 140 MHz provides images with a dynamic range approaching 60 dB for an excitation frequency of 3 MHz.
机译:提出了一种紧凑的医学超声波束形成器架构,该架构使用过采样的1位模数(A / D)转换器。使用稀疏样本处理,因为图像线的回波信号通过其同相和正交分量在沿线的512个等距焦点中重建。该信息足以呈现B模式图像并创建色流图。高采样率为聚焦提供了必要的延迟分辨率。低通道数据宽度(1位)使构建紧凑的波束形成器逻辑成为可能。使用有限脉冲响应(FIR)滤波器完成信号重建,该滤波器应用于delta-sigma调制器输出流的选定位序列。该方法允许多通道波束形成器适合单现场可编程门阵列(FPGA)设备。据估计,一个32通道的波束成形器将占据市售中档FPGA中可用逻辑资源的50%,并且能够以129 MHz的频率运行。在3 MHz的激励频率下,以140 MHz的频率对体系结构进行仿真可为图像提供接近60 dB的动态范围。

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