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Ultrasonic Signal Acquisition and Processing platform based on Zynq SoC

机译:基于Zynq SoC的超声信号采集与处理平台

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Ultrasonic testing systems have been widely used in medical and industrial fields, demanding strict requirements for processing speed and re-configurability of the hardware system. This paper presents a prototype of a reconfigurable, high performance, low cost and real-time Ultrasonic Signal Acquisition and Processing (USAP) platform based on Zynq System-on-Chip (SoC). The USAP platform consists of five major components: Multi-level voltage power supply; High voltage pulse generation; Ultrasonic signal acquisition; Sampling control unit and Digital signal processing module. The system uses Xilinx Zynq SoC as main processor and controller. It combines both ARM processor and field-programmable gate array (FPGA) on the same chip, which makes the system capable of doing complex system configuration and performing high speed data processing. With this arrangement, the developed system is highly reconfigurable, where software and hardware configuration can be changed on both ARM and FPGA. This paper presents a system design flow of a complete ultrasonic testing system which is capable of acquiring ultrasonic data and performing advanced signal processing algorithms in real-time.
机译:超声波测试系统已广泛用于医疗和工业领域,对处理速度和硬件系统的可重新配置性提出了严格的要求。本文提出了基于Zynq片上系统(SoC)的可重构,高性能,低成本和实时超声信号采集和处理(USAP)平台的原型。 USAP平台包括五个主要组件:多级电压电源;高压脉冲产生;超声波信号采集;采样控制单元和数字信号处理模块。该系统使用Xilinx Zynq SoC作为主处理器和控制器。它在同一芯片上结合了ARM处理器和现场可编程门阵列(FPGA),这使系统能够执行复杂的系统配置并执行高速数据处理。通过这种安排,所开发的系统具有很高的可重新配置性,可以在ARM和FPGA上更改软件和硬件配置。本文提出了一个完整的超声测试系统的系统设计流程,该系统能够采集超声数据并实时执行高级信号处理算法。

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