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Comparison of spectral analysis of vibration using commercial knock sensor and 3-axis acceleration sensor

机译:商业爆震传感器和3轴加速度传感器振动光谱分析比较

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With the development of internal combustion engines, engineers attempt to reduce the noise and vibration generated. Due to the high cost of fuel, are increasingly looking for new sources of power in order to reduce costs. In diesel engines, an increasingly popular method is the admixture of propane-butane. This follows because of the price of the fuel as well as to improve the efficiency of combustion. With the development of this type of dual fuel power seems to be a reasonable study of the effects of LPG to generate noise and vibration, as well as an attempt to evaluate the combustion process. Unfortunately, too much addition of LPG causes a phenomenon called knock consisting in abnormal, uneven, explosive combustion of fuels in reciprocating engines. This phenomenon may lead to a reduction in engine performance and permanent damage. Control of the knock detection uses vibration acceleration sensors recording the high frequency ranges. Within the framework of the research conducted by the team of authors, an attempt was made to compare the vibroacoustic signals originating from the commercial knocking sensor with a three-axis acceleration sensor. These signals were subject to a quick Fourier transform in the purpose of analysing the amplitude spectra.
机译:随着内燃机的发展,工程师试图减少产生的噪音和振动。由于燃料成本高,越来越多地寻找新的电力来源,以降低成本。在柴油发动机中,一种越来越流行的方法是丙烷丁烷的混合物。这是由于燃料的价格以及提高燃烧效率的情况下。随着这种类型的双重燃料功率的发展似乎是对LPG产生噪声和振动的影响的合理研究,以及评估燃烧过程的尝试。不幸的是,LPG的太多添加了诸如往复式的燃料异常,不均匀,爆炸性燃烧的爆震的现象。这种现象可能导致发动机性能和永久性损坏的降低。控制爆震检测使用记录高频范围的振动加速度传感器。在作者团队进行的研究框架内,尝试使用具有三轴加速度传感器的源自商业爆震传感器的常规信号进行比较。这些信号旨在进行快速傅里叶变换,目的是分析幅度谱。

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