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DEVELOPMENT OF RETRACTABLE REAL-CAR ACTIVE DEFLECTOR SYSTEM FOR SUNROOF BUFFETING CONTROL

机译:Sunroof Buafeting Control的可伸缩真空活跃偏转系统的开发

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Sunroof buffeting is generated by the resonance of the cabin cavity whose opening is aerodynamically excited by the periodic convection of vortices in the shear layer over the sunroof opening. Generation and convection of vortices in the shear layer are controlled by the resonance of the cabin cavity. A recent trend is a large sunroof opening such as a panoramic sunroof in accordance with the customer’s preference for a feeling of openness. Since the sunroof buffeting tends to become louder as the sunroof opening area becomes larger, a conventional passive deflector may not be a solution in this case, and a new effective method like an active deflector system is required to reduce the sunroof buffeting. In this study, the concept of the active deflector system suggested by Kook et.al is more practically developed for the real-car sunroof which has a retractable sunroof deflector system. In the active deflector system, a combination of a microphone sensor mounted inside the car cabin, a controller, a power amplifier and deflector actuators is added for active buffeting control. Since the acoustic pressure inside the cavity is influenced by the shear layer modified by the active deflector, the active deflector and the acoustic response of the cavity form a closed-loop system. This mechanism is not the conventional active noise control, but a kind of new active flow control for low-frequency wind noise reduction. A new actuator-deflector linkage design was revised for the retractable deflector. To make them smaller and lighter was the first consideration of this new design. The voice-coil actuator and the controller were also newly developed. The problems of rattle noise and weak structural rigidity were found out and solved. Final test results showed the reduction of buffeting of 15dB through this retractable active sunroof deflector system.
机译:天窗自助式由机舱腔的共振产生,其开口通过剪切层在天窗开口上的剪切层中的涡流周期性对流进行空气动力学激发。通过舱室腔的共振来控制剪切层中的涡流的产生和对流。最近的趋势是一个大型天窗开口,如顾客偏好的偏好的偏好,如全景Sunrof。由于天窗的自发性倾向于变得更大,因为随着天窗的开口区域变大,传统的被动偏转器可以不是在这种情况下的溶液,并且需要一种新的有效方法,如有源偏转系统,以减少天窗的自发性。在这项研究中,Kook et.al建议的有源偏转系统的概念更实际地为真正的汽车天窗开发,具有可伸缩的Sunrof偏转器系统。在有源偏转器系统中,添加了安装在车厢内,控制器,功率放大器和偏转器致动器内的麦克风传感器的组合用于主动抖动控制。由于腔内的声压受到由有源偏转器修改的剪切层的影响,因此活性偏转器和腔的声反应形成闭环系统。该机制不是传统的有源噪声控制,而是一种用于低频风噪声的新型主动流量控制。可伸缩偏转器修改了新的执行器偏转器连杆设计。使它们更小,打火机是对这一新设计的第一次考虑。还新开发了语音线圈致动器和控制器。发现了响噪声和弱结构刚性的问题并解决了。最终的测试结果表明,通过这种可伸缩的活性天窗偏转系统减少了15dB的缓冲。

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