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Optimization strategy for actuator and sensor placement in active structural acoustic control

机译:有源结构声学控制中执行器和传感器放置的优化策略

摘要

In active structural acoustic control the goal is to reduce the sound radiation of a structure by means of changing the vibrational behaviour of that structure. The performance of such an active control system is to a large extent determined by the locations of the actuators and sensors. In this work an approach is presented for the optimization of the actuator and sensor locations. The approach combines a numerical modelling technique, for predicting the control performance, and genetic optimization, to find the optimal actuator and sensor locations. The approach is tested for a setup consisting of clamped rectangular plate with a piezoelectric actuator and either structural or acoustic sensors. The results show that a control system with optimal actuator and sensor configuration outperforms an arbitrary chosen configuration in terms of reduction in radiated sound power.
机译:在主动结构声控制中,目标是通过改变结构的振动特性来减少结构的声辐射。这种主动控制系统的性能在很大程度上取决于致动器和传感器的位置。在这项工作中,提出了一种用于优化执行器和传感器位置的方法。该方法将数值建模技术(用于预测控制性能)和遗传优化相结合,以找到最佳的执行器和传感器位置。已对该方法进行了测试,测试的设置包括带有压电致动器的夹紧矩形板以及结构或声学传感器。结果表明,就减小辐射声功率而言,具有最佳执行器和传感器配置的控制系统优于任意选择的配置。

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