Design for Portability of Reconfigurable Virtual Instrumentation

K. Mannatunga, Luis G.G. Ordóñez, Marie B. Amador, M. Crespo, A. Cicuttin, S. Levorato, R. Melo, B. Valinoti
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引用次数: 6

Abstract

A portable architectural design strategy is described for the implementation of reconfigurable virtual instrumentation based on programmable Systems-on-Chip integrating microprocessors and FPGA in the same physical device. The key role is played by a general purpose communication block as a means to efficiently separate the activities carried out in the microprocessor and in the FPGA. Both parts interact according to simple logic protocols by reading and writing data on the common memory resources of the communication block. The architecture of the proposed communication system can be easily implemented in practically any modern programmable System-on-Chip. With the proposed strategy, the porting of embedded software programs and associated FPGA designs among different device families and vendors is facilitated. A structured methodology is proposed for handling complex real-time systems based on these programmable Systems-on-Chip. We described a concrete communication block that has been successfully implemented and utilized for a quick implementation of a data acquisition system based on a Xilinx Zynq-7030 FPGA Mezzanine Card (FMC) and a custom FMC module with an 8-bit 500 MSPS ADC.
可重构虚拟仪器的可移植性设计
描述了一种可移植的架构设计策略,用于实现基于可编程片上系统的可重构虚拟仪器,该系统将微处理器和FPGA集成在同一物理设备中。关键的作用是一个通用的通信块,作为一种有效地分离在微处理器和FPGA中进行的活动的手段。这两个部分通过在通信块的公共内存资源上读写数据,根据简单的逻辑协议进行交互。所提出的通信系统架构可以很容易地在几乎任何现代可编程片上系统中实现。利用所提出的策略,嵌入式软件程序和相关的FPGA设计可以在不同的设备系列和供应商之间进行移植。提出了一种结构化的方法来处理基于这些可编程片上系统的复杂实时系统。我们描述了一个具体的通信块,该通信块已成功实现并用于基于Xilinx Zynq-7030 FPGA mezz卡(FMC)和带有8位500 MSPS ADC的定制FMC模块的数据采集系统的快速实现。
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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