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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Noise reduction of the automobile multi-mode muffler using differential gap control and neural network control
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Noise reduction of the automobile multi-mode muffler using differential gap control and neural network control

机译:基于差动间隙控制和神经网络控制的汽车多模式消声器降噪

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In this study, a controllable multi-mode exhaust system was investigated by analysing the acoustic structure of a low-noise low-back-pressure air exhaust system and forming its controller. After selecting the exhaust system structure that considered the frequency characteristics of the vehicle's exhaust noise with a large acoustic transmission loss, the basic muffler of the controllable multi-mode exhaust system was designed. The basic structure of the controllable multi-mode muffler with a curved side inlet and a curved side outlet was determined. The theoretical and experimental values of the acoustic transmission loss for straight pipes and for curved pipes were compared with no significant difference. To control the curved multi-mode exhaust system, a differential gap controller and a neural network controller were designed and simulated for control tests. The study findings reveal that the use of the proposed model for noise control achieves a noise reduction of 40-50% over systems with no noise control, proving that this exhaust system is effective in noise control. The feasibility of the noise-controllable multi-mode exhaust system was investigated using both a differential gap controller and a neural network controller.
机译:在这项研究中,通过分析低噪声低背压排气系统的声学结构并形成其控制器,研究了可控的多模式排气系统。在选择考虑了具有大的声传输损耗的车辆排气噪声的频率特性的排气系统结构之后,设计了可控多模式排气系统的基本消声器。确定了具有弯曲侧入口和弯曲侧出口的可控多模式消声器的基本结构。比较了直管和弯管的声传输损耗的理论和实验值,没有显着差异。为了控制弯曲的多模式排气系统,设计并模拟了差分间隙控制器和神经网络控制器进行控制测试。研究发现表明,与没有噪声控制的系统相比,使用所建议的模型进行噪声控制可将噪声降低40-50%,从而证明该排气系统在噪声控制方面是有效的。使用差动间隙控制器和神经网络控制器研究了可控噪声的多模式排气系统的可行性。

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