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Demodulation of Instantaneous Rotational Speed of Diesel Engine Based on Hilbert Transform

机译:基于希尔伯特变换的柴油机瞬时转速解调

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To measure diesel engine rotational speed,special 84teethed wheel is fixed across the engine output shaft,and magnetoelectric transducer mounted above the wheel. The induced electromotive force between the tooth and the sensor is measured,whose frequency characteristics contains the engine speed information. Engine instantaneous speed is extracted by counting process method and Hilbert demodulation method respectively,and their differences are analyzed Taking no tooth wheel indexing mismachining tolerance into consideration,the time resolution from the counting process mainly lies on the teeth number. While the number is limited,the result cannot be satisfactory. And its amplitude error can be guaranteed within need only by greater sampling frequency. Comparatively,time resolution of the engine instantaneous speed from the Hilbert methods depends on the sampling frequency,so it is relatively fine. And its error mainly results from the signal processing. Avoiding high sampling frequency demand.
机译:为了测量柴油发动机的转速,在发动机输出轴上固定有专用的84齿轮,并在轮上方安装了磁电传感器。测量牙齿和传感器之间的感应电动势,其频率特性包含发动机转速信息。分别通过计数处理方法和希尔伯特解调方法分别提取发动机瞬时转速,并分析它们的差异,在不考虑齿轮分度误差的情况下,计数过程的时间分辨率主要取决于齿数。虽然数量有限,但效果并不理想。而其幅度误差只能通过更大的采样频率来保证。相对而言,基于希尔伯特方法的发动机瞬时速度的时间分辨率取决于采样频率,因此相对较好。其误差主要是由信号处理引起的。避免高采样频率需求。

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