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Experimental investigation of different active noise control concepts applied to a passenger car equipped with an active windshield

机译:应用于装有主动挡风玻璃的乘用车的不同主动噪声控制概念的实验研究

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摘要

The main purpose of this work is the implementation and experimental investigation of different active structural acoustic control (ASAC) concepts for the reduction of interior noise in an automobile passenger compartment. For the control experiments, a medium-class test car was used, which had been equipped with an active windshield. The active windshield consists of the serial-production laminated glass pane augmented with piezoceramic patch-transducers applied to the blackened rim of the windshield. A multi-reference test provided measurement data for the identification of a local discrete-time state-space model (SSM). The subsequent acquisition of frequency response functions (FRF) by way of using the same actuators but measuring on a much finer grid provided the database for the formulation of a least-squares problem to derive a global system model. Based on the local and global discrete-time SSMs, different controllers were designed and experimentally realized. The comparison of the vibration levels in open- and closed-loop showed a global reduction of 5-7 dB in the acoustically relevant frequency band containing the second and third structural resonance of the windshield system. The occurrence of complex operational deflection shapes (ODS) was identified as the main limitation concerning the disturbance rejection of the active system. The acoustic performance of the ASAC system is reflected in a reduction up to 15 dB in sound pressure level (SPL).
机译:这项工作的主要目的是实施和实验研究不同的主动结构声学控制(ASAC)概念,以减少汽车乘客车厢的内部噪声。对于控制实验,使用了中级测试车,该测试车配备了主动挡风玻璃。主动式挡风玻璃由批量生产的夹层玻璃板组成,并在挡风玻璃的黑边上增加了压电陶瓷贴片换能器。多参考测试提供了用于识别局部离散时间状态空间模型(SSM)的测量数据。随后通过使用相同的执行器但在更精细的网格上进行测量来获取频率响应函数(FRF),为数据库的最小二乘问题求解提供了一个数据库,以导出全局系统模型。基于本地和全局离散时间SSM,设计并实验实现了不同的控制器。开环和闭环振动水平的比较显示,在包含挡风玻璃系统第二和第三结构共振的声学相关频带中,整体降低了5-7 dB。复杂的操作偏转形状(ODS)的出现被认为是有关有源系统干扰抑制的主要限制。 ASAC系统的声学性能反映为声压级(SPL)降低了15 dB。

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