FPGA的多通道时域均匀采样系统研究*

任彦良, 陈鸿, 岳凤英

集成电路与嵌入式系统 ›› 2022, Vol. 22 ›› Issue (8) : 57-60.

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PDF(1139 KB)
集成电路与嵌入式系统 ›› 2022, Vol. 22 ›› Issue (8) : 57-60.
新器件新技术

FPGA的多通道时域均匀采样系统研究*

  • 任彦良1,2, 陈鸿1,2, 岳凤英1,2
作者信息 +

Research on Multi-channel Time-domain Uniform Sampling System Based on FPGA

  • Ren Yanliang1,2, Chen Hong1,2, Yue Fengying1,2
Author information +
文章历史 +

摘要

设计了一种基于FPGA的多通道多采样率的数据均匀采编系统。系统以Spartan-6系FPGA为主控制器。硬件部分采用三阶有源低通滤波对信号进行抗混叠处理,确保数据采集的精确性;逻辑设计部分读取ROM地址表,将不同采样率信号通过模拟开关以1 137 ns的切换频率送入真12位模/数转换芯片,实现高效采集时序。经过实物测试,对于不同档位模拟信号均可实现采集精度优于0.5%的高精度采集,完全符合设计要求,目前已应用于实际生产中。

Abstract

In the paper,a multi-channel multi-sample rate data uniform collection and editing system is designed based on FPGA for the accuracy requirements of signal acquisition of the acquisition system.The system is based on the Spartan-6 series FPGA as the main controller.The hardware part:the third-order active low-pass filtering is used to anti-alias the signal to ensure the accuracy of data acquisition.The logic design part:reading the ROM address table sends the signals of different sample rates to the true 12-bit analog-to-digital conversion chip at a switching frequency of 1 137 ns through the analog switch to achieve efficient acquisition timing.After physical testing,for different gear analog signals can achieve high-precision acquisition with a acquisition accuracy of better than 0.5%,which fully meets the design requirements and has been applied to actual production.

关键词

FPGA / 抗混叠滤波 / 均匀采样

Key words

FPGA / anti-aliasing filtering / homogeneous sampling

引用本文

导出引用
任彦良, 陈鸿, 岳凤英. FPGA的多通道时域均匀采样系统研究*[J]. 集成电路与嵌入式系统. 2022, 22(8): 57-60
Ren Yanliang, Chen Hong, Yue Fengying. Research on Multi-channel Time-domain Uniform Sampling System Based on FPGA[J]. Integrated Circuits and Embedded Systems. 2022, 22(8): 57-60
中图分类号: TN710   

参考文献

[1] 刘勇良,沈三民,李建军,等.基于FPGA的高精度模拟量变换器设计[J].仪表技术与传感器,2019(2):31-34,47.
[2] 郝少帅,杨玉华,王淑琴.基于FPGA的高精度采集系统的研究与实现[J].电子测量技术,2020,43(19):154-158.
[3] 徐燕,毛师彬,汤永东,等.基于FPGA的多通道模拟量采集/输出PCI板卡的研制[J].测控技术,2018,37(12):119-123.
[4] 王闯,任勇峰,李辉景.基于FPGA的屉式温度采集模块设计[J].传感器与微系统,2015,34(12):79-82.
[5] 李圣昆,陈晓敏,文丰,等.基于FPGA的采编器稳定性优化设计[J].兵器装备工程学报,2021,42(7):216-221.
[6] 杨烨,闫丽.基于FPGA的数据采集系统[J].工业仪表与自动化装置,2019(5):85-86,109.
[7] 陈健伟,陈鸿,王晋祺,等.高可靠性多通道模拟信号采集存储系统[J].仪表技术与传感器,2019(3):114-118.
[8] 于皓博.某数据采集记录装置的关键技术研究[D].太原:中北大学,2019.
[9] 张传民.某弹载多通道数据采集系统的研究与设计[D].太原:中北大学,2015.
[10] 韩宾,易志强,江虹,等.一种高精度多通道实时数据采集系统设计[J].仪表技术与传感器,2019(9):42-45.
[11] 杨圣龙,任勇峰,李辉景.基于FPGA的模/数混合采集系统优化设计[J].现代电子技术,2018,41(6):117-120,124.
[12] 郭亮,卫一然,甄国涌.基于FPGA的高速数据采集系统设计实现[J].计算机测量与控制,2013,21(2):537-539.

基金

* 山西省面上自然基金项目(201901D111158)资助。

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