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A Strict-Time Distributed Architecture for Digital Beamforming of Ultrasound Signals

机译:超声信号数字波束形成的严格时间分布式架构

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This paper presents a strict timing-coherent digital signal processing architecture. The main requirement is that programmable events can be produced within predictable time intervals with tight accuracy (timing errors $ 1 ns). This characteristic is essential to ultrasound beamforming. The followed approach defines a modular and scalable architecture (AMPLIA), which is configured as a multibranch pipeline. This arrangement guarantees timing coherence along all the system, independent of the number of processing modules. An important element of the architecture is the interface and control unit (ICU), which decouples the asynchronous communication channel with a host computer to the strictly timing-coherent domain of the signal processing system. Furthermore, in the beamforming application, several elements have a great impact on system timing resolution, particularly when dynamic focusing is involved. This paper addresses the issues of coded excitation, analog-to-digital (A/D) conversion, and signal interpolation in achieving dynamic focusing by progressive focusing correction with processing rates of several gigasamples per second and tight timing accuracy.
机译:本文提出了一种严格的时序相干数字信号处理体系结构。主要要求是可编程事件可以在可预测的时间间隔内以严格的精度产生(定时误差为1 ns)。该特性对于超声波束成形至关重要。遵循的方法定义了模块化和可扩展的架构(AMPLIA),该架构被配置为多分支流水线。这种安排可确保整个系统的时序一致性,而与处理模块的数量无关。该体系结构的重要组成部分是接口和控制单元(ICU),它将与主机的异步通信通道解耦到信号处理系统的严格定时一致的域。此外,在波束成形应用中,几个元素对系统时序分辨率有很大影响,特别是在涉及动态聚焦时。本文解决了编码激励,模数(A / D)转换和信号插值问题,这些问题是通过逐步聚焦校正以每秒数千兆采样的处理速率和严格的定时精度实现动态聚焦的。

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