Design and evaluation of reconfigurable ultrasonic testing system

Vidya Vasudevan, Boyang Wang, Pramod Govindan, J. Saniie
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Abstract

Ultrasonic data acquisition systems used in the medical imaging and nondestructive testing applications have critical requirements in order to be capable of evaluating and prototyping ultrasound applications. In this paper, a system-on-chip (SoC) based reconfigurable ultrasonic testing system (RUTS) is developed for implementation of high-speed ultrasonic signal processing algorithms. RUTS comprises of a fully reconfigurable analog front-end (AFE) sub-system for efficient data acquisition, and a Xilinx Zynq SoC module for dynamic feature control. Computationally intensive ultrasonic signal processing algorithms are implemented on Zynq SoC using hardware-software co-design methodologies. AFE supports up to 8 transducers for phased-array implementation. This Linux-based system is analyzed for ultrasonic data compression implementation providing a very versatile environment for further ultrasound system development and research work.
可重构超声检测系统的设计与评价
超声数据采集系统用于医学成像和无损检测应用,为了能够评估和原型超声应用的关键要求。本文开发了一种基于片上系统(SoC)的可重构超声检测系统(RUTS),用于实现高速超声信号处理算法。RUTS包括一个完全可重构的模拟前端(AFE)子系统,用于高效的数据采集,以及一个用于动态特征控制的Xilinx Zynq SoC模块。计算密集型超声信号处理算法在Zynq SoC上采用软硬件协同设计方法实现。AFE支持多达8个换能器相控阵实施。本文分析了基于linux的超声数据压缩系统的实现,为进一步的超声系统开发和研究工作提供了一个非常通用的环境。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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