首页> 外文会议>IMECE2009;ASME international mechanical engineering congress and exposition >GLOBAL ACTIVE CONTROL OF TRANSMITTED SOUND INTO ACOUSTIC CAVITY WITH SPEAKERS AND PIEZOELECTRIC PATCH ACTUATORS
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GLOBAL ACTIVE CONTROL OF TRANSMITTED SOUND INTO ACOUSTIC CAVITY WITH SPEAKERS AND PIEZOELECTRIC PATCH ACTUATORS

机译:用扬声器和压电补片执行器对声音腔内的传递声音进行全局主动控制

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In this work modeling of a vibro-acoustic system and global sound field control with both acoustic and structural actuators have been studied. The model of the system consists of a 3D rectangular cavity with five acoustically rigid walls and a flexible plate on the top of cavity. First, modeling of the vibro-acoustic system has been acquired and subsequently the mode shapes and natural frequencies of the coupled system have been calculated. Plane waves on the plate surface are the main sources of disturbances in this system. Undesired sound (noise) which is propagated into the enclosure is controlled by mounted piezoelectric patch actuators on the plate and acoustic piston sources (speakers) inside cavity. The global active control is designed to minimize the acoustic potential energy inside the cavity. The control performance has been investigated by acoustic and structural actuators separately and simultaneously.
机译:在这项工作中,对振动声学系统的建模以及具有声学和结构致动器的全局声场控制进行了研究。该系统的模型由一个3D矩形腔体组成,该腔体具有五个声学刚性的壁和一个位于腔体顶部的柔性板。首先,获取了振动声学系统的模型,然后计算了耦合系统的振型和固有频率。板表面上的平面波是该系统中干扰的主要来源。传播到外壳中的不良声音(噪声)由安装在板上的压电贴片促动器和腔体内的声学活塞声源(扬声器)控制。全局主动控制旨在将腔体内的声势能降至最低。声学和结构执行器已分别和同时对控制性能进行了研究。

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