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基于FPGA和MicroBlaze的高精度频率测量方法
引用本文:刘东,朱名日,余淑华,蒲哲,李瑞帅.基于FPGA和MicroBlaze的高精度频率测量方法[J].桂林电子科技大学学报,2013(5):394-397.
作者姓名:刘东  朱名日  余淑华  蒲哲  李瑞帅
作者单位:桂林电子科技大学电子工程与自动化学院,广西桂林541004
基金项目:广西科学研究与技术开发计划(桂科攻11107006-19)
摘    要:为提高频率测量精度,对传统的等精度频率测量方法进行改进,修正了基准信号的计数误差,提高测量精度;通过对被测信号进行预分频,保证测量范围。采用SOPC技术在FPGA上构建MicroBlaze软核的嵌入式系统实现方案,通过分频40MHz系统时钟得到各种测试信号,给出了0.001~40MHz的实验结果。结果表明,该系统工作稳定可靠,测量精度高,相对误差不大于0.000 01%。

关 键 词:频率测量  相对误差  FPGA  MicroBlaze  等精度

A high accuracy frequency measurement method based on FPGA and MicroBlaze
Liu Dong,Zhu Mingri,Yu Shuhua,Pu Zhe,Li Ruishuai.A high accuracy frequency measurement method based on FPGA and MicroBlaze[J].Journal of Guilin Institute of Electronic Technology,2013(5):394-397.
Authors:Liu Dong  Zhu Mingri  Yu Shuhua  Pu Zhe  Li Ruishuai
Affiliation:(School of Electronic Engineering and Automation, Guilin University of Electronic Technology, Gnilin 541004, China)
Abstract:Traditional equal precision frequency measurement method was analyzed and improved. Through amending the counting result of the reference clock signal, the relative error of the measuring result is effectively decreased. Through dividing the measured signal, the measurement range is greatly broadened. The improved method is verified on the embedded system based on FPGA and MicroBlaze with SOPC technology. Finally, the results of the signals (0. 001--40 MHz) which are divided from the system clock signal are presented. The testing results show that the system is stable and reliable and its maximum relative error is less than 0. 000 01%.
Keywords:frequency measurement  relative error  FPGA  MicroBlaze  equal precision
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