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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >ULA-OP 256: A 256-Channel Open Scanner for Development and Real-Time Implementation of New Ultrasound Methods
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ULA-OP 256: A 256-Channel Open Scanner for Development and Real-Time Implementation of New Ultrasound Methods

机译:ULA-OP 256:256通道开放式扫描仪,用于开发和实时实施新的超声方法

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摘要

Open scanners offer an increasing support to the ultrasound researchers who are involved in the experimental test of novel methods. Each system presents specific performance in terms of number of channels, flexibility, processing power, data storage capability, and overall dimensions. This paper reports the design criteria and hardware/software implementation details of a new 256-channel ultrasound advanced open platform. This system is organized in a modular architecture, including multiple front-end boards, interconnected by a high-speed (80 Gb/s) ring, capable of finely controlling all transmit (TX) and receive (RX) signals. High flexibility and processing power (equivalent to 2500 GFLOP) are guaranteed by the possibility of individually programming multiple digital signal processors and field programmable gate arrays. Eighty GB of on-board memory are available for the storage of prebeamforming, postbeamforming, and baseband data. The use of latest generation devices allowed to integrate all needed electronics in a small size (34 cm×30 cm×26 cm). The system implements a multiline beamformer that allows obtaining images of 96 lines by 2048 depths at a frame rate of 720 Hz (expandable to 3000 Hz). The multiline beamforming capability is also exploited to implement a real-time vector Doppler scheme in which a single TX and two independent RX apertures are simultaneously used to maintain the analysis over a full pulse repetition frequency range.
机译:开放式扫描仪为参与新方法实验测试的超声研究人员提供了越来越多的支持。每个系统在通道数量,灵活性,处理能力,数据存储能力和总体尺寸方面均表现出特定的性能。本文报告了新的256通道超声高级开放平台的设计标准和硬件/软件实现细节。该系统采用模块化架构进行组织,包括多个前端板,这些前端板通过高速(80 Gb / s)环互连,能够精细地控制所有发射(TX)和接收(RX)信号。通过对多个数字信号处理器和现场可编程门阵列进行单独编程的可能性,保证了高灵活性和处理能力(相当于2500 GFLOP)。 80 GB的板载内存可用于存储波束前成形,波束后成形和基带数据。通过使用最新一代的设备,可以集成所有所需的小尺寸电子设备(34 cm×30 cm×26 cm)。该系统实现了多线波束形成器,该多线波束形成器允许以720 Hz(可扩展至3000 Hz)的帧速率获取2048深度的96条线的图像。还利用多线波束成形功能来实现实时矢量多普勒方案,其中同时使用单个TX和两个独立的RX孔径来在整个脉冲重复频率范围内维持分析。

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