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Spinning frequency estimation algorithm of MEMS gyro's output signal based on FFT coefficient

机译:基于FFT系数的MEMS陀螺仪输出信号的旋转频率估计算法

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摘要

To obtain accurate demodulation of the spinning frequency of MEMS carrier-driven gyro output signal, a frequency estimation algorithm combining the real and imaginary parts on the basis of fast Fourier transformation (FFT) coefficient was proposed. Both signal simulation and real-time test were performed to verify the advantages of FFT coefficient frequency estimation algorithm. In the signal simulation, CCS software was used in the demodulation and error analysis of the spinning frequency of gyro signal simulated by signal generator. Results showed that the maximum relative error of spectrum detection algorithm is 2.53%, and the maximum relative error of FFT frequency estimation algorithm is 0.1%. In the real-time test, demodulation and error analysis of the spinning frequency of gyro signal were conducted under real-time test through three-axis precise turntable. The maximum relative error of spectrum detection algorithm is 2.33%, and the maximum relative error of FFT frequency estimation algorithm is 0.1%. Experimental results indicated that, compared with spectrum detection algorithm, FFT frequency estimation algorithm exhibits higher demodulation precision, reduced maximum relative error by 2.23-2.43%, and is convenient for hardware implementation.
机译:为了获得MEMS载波驱动的陀螺仪输出信号的旋转频率的精确解调,提出了基于快速傅里叶变换(FFT)系数的频率估计算法。执行信号仿真和实时测试以验证FFT系数频率估计算法的优点。在信号仿真中,CCS软件用于通过信号发生器模拟陀螺信号的旋转频率的解调和误差分析。结果表明,光谱检测算法的最大相对误差为2.53%,FFT频率估计算法的最大相对误差为0.1%。在实时测试,通过三轴精确转盘在实时测试下进行陀螺信号的旋转频率的解调和误差分析。光谱检测算法的最大相对误差为2.33%,FFT频率估计算法的最大相对误差为0.1%。实验结果表明,与频谱检测算法相比,FFT频率估计算法表现出更高的解调精度,减少了最大相对误差2.23-2.43%,并且便于硬件实现。

著录项

  • 来源
    《Microsystem technologies》 |2018年第4期|共5页
  • 作者单位

    Beijing Univ Posts &

    Telecommun 10 Xitucheng Rd Beijing 100876 Peoples R China;

    Beijing Informat Sci &

    Technol Univ Res Ctr Sensor Technol 35 North Fourth Ring Rd Beijing 100101 Peoples R China;

    Inner Mongolia Univ Finance &

    Econ 185 West North Second Ring Rd Hohhot 010070 Peoples R China;

    Beijing Univ Posts &

    Telecommun 10 Xitucheng Rd Beijing 100876 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 微电子学、集成电路(IC);
  • 关键词

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