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首页> 外文期刊>Journal de Physique, IV: Proceedings of International Conference >Semi-passive piezoelectric noise control in transmission by synchronized switching damping on voltage source
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Semi-passive piezoelectric noise control in transmission by synchronized switching damping on voltage source

机译:通过电压源上的同步开关阻尼来控制传输中的半被动压电噪声

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This paper deals with the so called SSD (stands for Synchronized Switch Damping) technique that is a semi-passive approach developed to address the problem of structural vibration damping and noise reduction. Compared to standard passive piezoelectric damping, this technique offers the advantage of self-adaptation with environmental variations (e.g. temperature). On the contrary to the active damping systems, its implementation does not require any sophisticated signal processing or any bulk power. In the semi passive approach, the piezoelectric element is continuously switched from open circuit to short circuit synchronously to the strain. Due to this switching mechanism, a phase difference appears between the strain induced by an incident acoustic wave and the resulting voltage, thus creating energy dissipation. With the non-linear process, damping performances directly depend on the electromechanical coupling coefficient of the system. For the weakly coefficient coupling systems, the voltage amplitude of the piezoelectric elements can be artificially increased by switching on voltage sources. Using this new method SSDV (stands for Synchronized Switch Damping on Voltage source), 16.1 dB attenuation on the transmitted wave pressure in the tube is obtained whereas only 8dB were achieved with the classical SSDI (stands for Synchronized Switch Damping on Inductor). Furthermore, as this method is adaptive, attenuation is observed over a 600 Hz-wide frequency band.
机译:本文涉及所谓的SSD(同步开关阻尼),它是一种半被动方法,旨在解决结构减振和降噪问题。与标准无源压电阻尼相比,该技术具有随环境变化(例如温度)而自适应的优势。与有源阻尼系统相反,它的实现不需要任何复杂的信号处理或任何大功率。在半被动方法中,压电元件与应变同步地连续地从开路切换到短路。由于这种切换机制,在入射声波引起的应变与所产生的电压之间会出现相位差,从而产生能量耗散。在非线性过程中,阻尼性能直接取决于系统的机电耦合系数。对于弱系数耦合系统,可以通过接通电压源来人为地增加压电元件的电压幅度。使用这种新方法,SSDV(代表电压源上的同步开关阻尼)在管中的传输波压上获得了16.1 dB的衰减,而传统的SSDI(代表电感器上的同步开关阻尼)仅获得了8dB。此外,由于此方法具有适应性,因此可以在600 Hz宽的频带上观察到衰减。

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