首页> 外文期刊>JSME International Journal. Series C, Mechanical Systems, Machine Elements and Manufacturing >The Performance Improvement for an Active Noise Control of an Automotive Intake System under Rapidly Accelerated Conditions
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The Performance Improvement for an Active Noise Control of an Automotive Intake System under Rapidly Accelerated Conditions

机译:快速加速条件下汽车进气系统主动噪声控制的性能改进

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摘要

The study of the noise reduction of an automobile has been concentrated on the reduction of the automotive engine noise because the engine noise is the major cause of automotive noise. However, many studies of automotive engine noise led to the interest of the noise reduction of the exhaust and intake system. The method of the reduction of the induction noise can be classified by the method of passive control and the method of active control. However, the passive control method has a demerit to reduce the effect of noise reduction at low frequency (below 500 Hz) range and to be limited by a space of the engine room. Whereas, the active control method can overcome the demerit of passive control method. The algorithm of active control is mostly used the LMS (Least-Mean-Square) algorithm because the LMS algorithm can easily obtain the complex transfer function in real-time. Especially, Filtered-X LMS (FXLMS) algorithm is applied to an ANC system. However, the convergence performance of LMS algorithm goes bad when the FXLMS algorithm is applied to an active control of the induction noise under rapidly accelerated driving conditions. So, in order to this problem, the modified FXLMS algorithm was proposed. In this study, the performance of an active control using the LMS algorithm under rapidly accelerated driving conditions was evaluated through the theoretical derivation using a chirp signal to have similar characteristics with the induction noise signal and the computational simulation and the control performance of the induction noise under rapidly and suddenly accelerated driving conditions was improved using the modified FXLMS algorithm.
机译:由于发动机噪声是引起汽车噪声的主要原因,因此对汽车的噪声降低的研究集中在降低汽车发动机噪声上。然而,对汽车发动机噪声的许多研究引起了对排气和进气系统的降噪的兴趣。降低感应噪声的方法可以分为被动控制方法和主动控制方法。然而,被动控制方法的缺点在于降低了低频(低于500Hz)范围的降噪效果,并且受到发动机室空间的限制。然而,主动控制方法可以克服被动控制方法的缺点。主动控制算法主要用于LMS(最小均方)算法,因为LMS算法可以轻松地实时获取复杂的传递函数。特别地,Filtered-X LMS(FXLMS)算法被应用于ANC系统。然而,当将FXLMS算法应用于在快速加速的驾驶条件下主动控制感应噪声时,LMS算法的收敛性能变差。因此,针对该问题,提出了改进的FXLMS算法。在这项研究中,通过使用线性调频信号的理论推导评估了在快速加速驾驶条件下使用LMS算法的主动控制的性能,该理论推导具有与感应噪声信号相似的特性,并且对感应噪声进行了计算仿真和控制性能使用改进的FXLMS算法改善了在快速和突然加速驾驶条件下的行驶状况。

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