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Application of Adaptive Wave Cancellation Underwater to a Piezoelectric-Material-Based Multilayer Sensor

机译:水下自适应波抵消在压电材料多层传感器中的应用

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摘要

This paper concerns the use of adaptive wave cancellation in a new multilayer smart skin sensor to attenuate the primary low-frequency noise underwater. The proposed multilayered system is designed with a piezoelectric actuator (Pb(In Nb )O –Pb(Mg Nb )O –PbTiO composite) and two layers of polyvinylidene fluoride to accelerate wave absorption. Furthermore, the use of a combination of an adaptive control scheme and a time-delay signal separation method has the potential to provide the proposed absorber system with a wave cancellation capability and thereby enable the absorber system to respond to environmental changes underwater. The use of smart piezoelectric materials and an adaptive control approach enables the absorber system to achieve the high attenuation level of the reflected waves, unlike typical absorber systems based on active noise control. Echo reduction experiments showed that the proposed piezoelectric-based multilayer sensor with an adaptive controller could attenuate reflected wave signals effectively.
机译:本文涉及在新型多层智能皮肤传感器中使用自适应波消除技术来衰减水下的主要低频噪声。所建议的多层系统设计有压电致动器(Pb(In Nb)O -Pb(Mg Nb)O -PbTiO复合材料)和两层聚偏二氟乙烯以加速波吸收。此外,结合使用自适应控制方案和时延信号分离方法有可能为所提出的吸收器系统提供消波能力,从而使吸收器系统能够响应水下环境变化。与基于主动噪声控制的典型吸收器系统不同,使用智能压电材料和自适应控制方法可使吸收器系统实现反射波的高衰减水平。回波降低实验表明,所提出的带有自适应控制器的基于压电的多层传感器可以有效地衰减反射波信号。

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