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Analysis of automobile engine cylinder pressure and rotation speed from engine body vibration signal

机译:从机体振动信号分析汽车发动机气缸压力和转速

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In order to improve the engine vibration signal process method for the engine cylinder pressure and engine revolution speed measurement instrument, the engine cylinder pressure varying with the engine working cycle process has been regarded as the main exciting force for the engine block forced vibration. The forced vibration caused by the engine cylinder pressure presents as a low frequency waveform which varies with the cylinder pressure synchronously and steadily in time domain and presents as low frequency high energy discrete humorous spectrum lines in frequency domain. The engine cylinder pressure and the rotation speed can been extract form the measured engine block vibration signal by low-pass filtering analysis in time domain or by FFT analysis in frequency domain, the low-pass filtering analysis in time domain is not only suitable for the engine in uniform revolution condition but also suitable for the engine in uneven revolution condition. That provides a practical and convenient way to design motor revolution rate and cylinder pressure measurement instrument.
机译:为了改进用于发动机气缸压力和发动机转速测量仪器的发动机振动信号处理方法,随着发动机工作循环过程而变化的发动机气缸压力被认为是发动机缸体强迫振动的主要激励力。由发动机汽缸压力引起的强制振动呈现为低频波形,其在时域中同步且稳定地随汽缸压力而变化,并且在频域中呈现为低频高能离散的幽默频谱线。可以通过时域的低通滤波分析或频域的FFT分析从测得的发动机缸体振动信号中提取发动机气缸压力和转速,时域的低通滤波分析不仅适合于均匀旋转条件下的发动机,但也适用于不均匀旋转条件下的发动机。这为设计电动机转速和气缸压力测量仪提供了一种实用方便的方法。

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