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Experimental investigation on the predictability of exhaust noise for feedforward active control on a two-cylinder diesel engine

机译:两缸柴油发动机前馈通噪声可预测性的实验研究

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The exhaust noise of a two-cylinder, four-stroke diesel engine was experimentally investigated in order to examine the predictability of the exhaust noise to be reduced by a feedforward active control system. Special attention has been paid to the low frequency characteristics of the exhaust noise as low frequency noise is difficult to reduce with a conventional muffler, but effective to control by active control technique. The periodicity of the exhaust noise was examined with the ensemble-average and ensemble-standard deviation of the exhaust pressure signals. The results showed that the exhaust noise investigated was basically quasi-periodic and its variation between cycles was acceptable with an adaptive control algorithm. The properties of the exhaust pressure in low frequency domain were analyzed with the spectra of the exhaust noise pressure. A method to estimate the instantaneous exhaust noise pressure proposed by the author in 1996 was applied to this diesel engine by estimating a limited number N of low frequency harmonics in terms of engine speed and load. This method matches the active control system by its fast response. The predicted and experimental results agree well and show that the prediction method is valid and the exhaust noise pressure is predictable with this method.
机译:实验研究了两个圆柱的排气噪声,四冲程柴油发动机,以检查通过前馈主控制系统减少的排气噪声的可预测性。随着传统的消声器难以减少,对排气噪声的低频特性进行了特别的注意,难以通过传统的消声器减少,但是通过主动控制技术有效地控制。用排气压力信号的集合平均值和集合标准偏差检查排气噪声的周期性。结果表明,所研究的排气噪声基本上是准周期性,其循环之间的变化是可接受的,自适应控制算法是可接受的。用排气噪声压力的光谱分析低频结构域中排气压力的性能。通过在发动机速度和负载方面估计有限数量的低频谐波,将1996年提出的作者提出的瞬时排气压力估算了瞬时排气压力。该方法通过快速响应与主动控制系统匹配。预测和实验结果吻合得很好,并表明预测方法有效,并且通过这种方法可预测排气压力可预测。

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