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Modular FPGA-based digital ultrasound beamforming

机译:基于模块化FPGA的数字超声波束成形

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The evaluation of ultrasound system is measured by the development in analog and digital electronics. A modular field programmable gate array (FPGA)-based digital ultrasound beamforming is presented. The digital beamforming is implemented in Virtex-5 FPGA. The objective of this work is to develop a modular low-cost PC-based digital ultrasound imaging system that has almost all of its processing steps done on the PC side. The system consists of: two 8 channels block and reconstructed line block. The 8 channel block consist of: memory block to save the samples data after converted to fixed point type, delay block implemented by addressable shift register — the delay process is based on sampled delay focusing (SDF) — and M-code block applied the summation of each RF channel samples. The reconstructed block consists of pipelined adder to apply the summation of the two 8 channels blocks. The power consumption and device utilization was acceptable. Also it is possible to build 16-,32-,64-, and 128-channel beamformer. The hardware architecture of the design provided flexibility for beamforming.
机译:超声系统的评估是通过模拟和数字电子学的发展来衡量的。提出了一种基于模块化现场可编程门阵列(FPGA)的数字超声波束成形技术。数字波束形成在Virtex-5 FPGA中实现。这项工作的目的是开发一种模块化的,基于PC的低成本数字超声成像系统,该系统几乎所有的处理步骤都在PC端完成。该系统包括:两个8通道块和重构的线路块。 8通道块包括:用于存储转换为定点类型后的采样数据的存储块,由可寻址移位寄存器实现的延迟块-延迟过程基于采样延迟聚焦(SDF)-和M代码块应用求和每个RF通道样本的数量。重建的块由流水线加法器组成,以应用两个8通道块的总和。功耗和设备利用率是可以接受的。也可以构建16通道,32通道,64通道和128通道波束形成器。该设计的硬件架构为波束形成提供了灵活性。

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