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首页> 外文期刊>Arabian Journal for Science and Engineering >MISO Control System for Noise Reduction in 3-D Enclosures Using PZT Actuators
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MISO Control System for Noise Reduction in 3-D Enclosures Using PZT Actuators

机译:PISO控制系统使用PZT执行器的3-D围栏降噪系统

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摘要

The low-frequency, high-level blade passage noise in aircraft and helicopter cabins deems passive noise reduction techniques ineffective. Most of the research on active techniques have focused on single input single output (SISO) control. The present work presents a multi-input single output (MISO) linear quadratic Gaussian (LQG) control system to actively reduce acoustic pressure inside a 3-D enclosure, representing a helicopter cabin, using piezoelectric actuators. The enclosure has five walls that are acoustically rigid and is covered with a simply supported flexible plate, to which piezoelectric actuators are symmetrically bonded. External noise is modeled with a time-dependent, spatially bounded Heaviside function simulating vibrations from helicopter rotor impinging disturbance on the upper surface of the cabin. First, the governing equations describing the distribution of plate displacements, piezoelectric actuator response, and acoustic pressure within the cavity are presented and combined to develop the state-space model of the coupled structural-acoustic system. Optimal design of a LQG controller is developed for the case of MISO control. The model is validated by comparison of its results with available published numerical and experimental results. The frequency response of the output due to input from each input channel is then determined and studied. Results demonstrate that significant attenuation is obtained for the desired low-frequency range compared to the uncontrolled system and to SISO control.
机译:飞机和直升机舱内的低频,高级刀片通道噪声认为是无源降噪技术无效。关于主动技术的大多数研究都集中在单输入单输出(SISO)控制上。本工作提供了一种多输入单输出(MISO)线性二次高斯(LQG)控制系统,用于使用压电致动器的三维外壳内的声压力减少声压。外壳有五个壁,可以声学刚性,并且用简单的支撑的柔性板覆盖,压电致动器对称粘合。外部噪声用时间依赖的空间有界的沉重函数模拟从直升机转子撞击机舱上表面上的扰动的振动。首先,提出并组合了描述板位移,压电致动器响应和音程内的声压的控制方程,以发展耦合结构 - 声学系统的状态空间模型。为MISO控制的情况开发了LQG控制器的最佳设计。该模型通过比较其具有可用发布的数值和实验结果的结果进行验证。然后确定和研究引起的来自每个输入通道的输入的输出的频率响应。结果表明,与不受控制的系统和SISO控制相比,获得了所需的低频范围的显着衰减。

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