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Rail Short Wave Irregularities Restoration Algorithm Based on Digital Inverse Filter Technology

机译:基于数字逆滤波技术的轨道短波不规则恢复算法

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In order to realize continuous detection of rail short wavelength irregularities and improve its restoration precision, an algorithm based on digital inverse filter technology is derived and presented. The inverse filter has been realized by means of Finite Impulse Response (FIR) digital filter. It has a complete linear phase characteristic which ensures no distortions of the restored waveform. Realization of the restoration algorithm is also based on Fast Fourier Transform (FFT) to make the restoration process effectively and efficiently. Finally the restored waveforms were compared with the results from RMF-2.3E devices and thus the restoration precision can be achieved. Results show higher restoration precision and reliability when compared to the traditional one of Mid-chord method. It means the restoration accuracy can be significantly improved by using digital inverse filter.
机译:为了实现轨道短波长的持续检测,提高其恢复精度,衍生和呈现了一种基于数字逆滤波技术的算法。通过有限脉冲响应(FIR)数字滤波器实现了逆滤波器。它具有完整的线性相位特性,可确保没有恢复波形的扭曲。恢复算法的实现还基于快速傅里叶变换(FFT),以有效且有效地进行恢复过程。最后将恢复的波形与RMF-2.3E器件的结果进行了比较,因此可以实现恢复精度。结果显示与中弦方法中的传统方法相比,恢复精度和可靠性更高。它意味着通过使用数字逆滤波器可以显着提高恢复精度。

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