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Reconfigurable Ultrasonic Testing System Development Using Programmable Analog Front-End and Reconfigurable System-on-Chip Hardware

机译:使用可编程模拟前端和可重新配置片上系统硬件的可重新配置超声波测试系统开发

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Ultrasonic testing systems have been extensively used in medical imaging and non-destructive testing applications. Generally, these systems aim at a particular application or target material. To make these systems portable and more adaptable to the test environments, this study presents a reconfigurable ultrasonic testing system (RUTS), which possesses dynamic reconfiguration capabilities. RUTS consists a fully programmable Analog Front-End (AFE), which facilitates beamforming and signal conditioning for variety of applications. RUTS AFE supports up to 8 transducers for phased-array implementation. Xilinx Zynq System-on-Chip (SoC) based Zedboard provides the back-end processing of RUTS. The powerful ARM embedded processor available within Zynq SoC manages the ultrasonic data acquisition/processing and overall system control, which makes RUTS a unique platform for the ultrasonic researchers to experiment and evaluate a wide range of real-time ultrasonic signal processing applications. This Linux-based system is utilized for ultra-sonic data compression implementation providing a versatile environment for further development of ultrasonic imaging and testing system. Furthermore, this study demonstrates the capabilities of RUTS by performing ultrasonic data acquisition and data compression in real-time. Thus, this reconfigurable system enables ultrasonic designers and researchers to efficiently prototype different experiments and to incorporate and analyze high performance ultrasonic signal and image processing algorithms.
机译:超声波测试系统已广泛用于医学成像和非破坏性测试应用中。通常,这些系统针对特定的应用或目标材料。为了使这些系统具有便携性并更适合测试环境,本研究提出了一种可重配置的超声测试系统(RUTS),该系统具有动态重配置功能。 RUTS包含一个完全可编程的模拟前端(AFE),可促进各种应用的波束成形和信号调理。 RUTS AFE最多支持8个传感器用于相控阵实施。基于Xilinx Zynq片上系统(SoC)的Zedboard提供了RUTS的后端处理。 Zynq SoC中提供的功能强大的ARM嵌入式处理器可管理超声数据的采集/处理和整个系统的控制,这使RUTS成为超声研究人员用来实验和评估各种实时超声信号处理应用程序的独特平台。这个基于Linux的系统用于超声数据压缩实现,为超声成像和测试系统的进一步开发提供了一个多功能的环境。此外,本研究通过实时执行超声数据采集和数据压缩展示了RUTS的功能。因此,这种可重新配置的系统使超声设计人员和研究人员能够有效地对不同的实验进行原型设计,并合并和分析高性能超声信号和图像处理算法。

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