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Development of a Practical Broadband Active Vibration Control System

机译:实用的宽带主动振动控制系统的开发

摘要

The goal of this work is to develop robust, lightweight, and low-power control units that can be used to suppress structural vibration in flexible aerospace structures. In particular, this paper focuses on active damping, which is implemented using compact decentralized control units distributed over the structure. Each control unit consists of a diamond-shaped piezoelectric patch actuator, three miniature accelerometers, and analog electronics. The responses from the accelerometers are added together and then integrated to give a signal proportional to velocity. The signal is then inverted, amplified, and applied to the actuator, which generates a control force that is out of phase with the measured velocity. This paper describes the development of the control system, including a detailed description of the control and power electronics. The paper also presents experimental results acquired on a Plexiglas window blank. Five identical control units installed around the perimeter of the window achieved 10 dB peak reductions and a 2.4 dB integrated reduction of the spatially averaged velocity of the window between 500 and 3000 Hz.
机译:这项工作的目标是开发坚固,轻巧和低功率的控制单元,可用于抑制挠性航空航天结构中的结构振动。特别是,本文着重于主动阻尼,它是通过分布在结构上的紧凑型分散控制单元实现的。每个控制单元都包括一个菱形压电贴片致动器,三个微型加速度计和模拟电子设备。来自加速度计的响应加在一起,然后积分以给出与速度成比例的信号。然后将信号反相,放大并施加到执行器,执行器产生与测得的速度异相的控制力。本文介绍了控制系统的开发,包括控制和电力电子设备的详细说明。本文还介绍了在有机玻璃窗毛坯上获得的实验结果。在窗户周围安装了五个相同的控制单元,峰值降低了10 dB,窗户的空间平均速度在500到3000 Hz之间的积分降低了2.4 dB。

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