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On the Implementation of Mode Localization Between Physical and Digital Resonators

机译:关于物理和数字谐振器之间模式定位的实现

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In the field of mass sensing, there is an ever growing interest in the development of ultrasensitive MEMS devices for agro-food, environment, safety or health. Within this context, mode localization in an array of coupled resonators has been studied and implemented for a few years due to its high sensitivity to mass perturbation. However, this phenomenon requires a few conditions often hard to gather mainly due to microfabrication flaws and the devices geometry. In this paper, we present a device able to generate mode localization using a single piezoelectric resonator connected in closed loop to a hardware that simulates in real time the other resonators. Its main strengths are its full tunability and adaptibility to the geometry of the resonators.
机译:在质量感测领域,人们对开发用于农业食品,环境,安全或健康的超灵敏MEMS器件的兴趣与日俱增。在这种情况下,由于耦合谐振器阵列对质量扰动具有很高的灵敏度,因此已经研究并实现了模式耦合在阵列中的定位。但是,这种现象需要一些条件,这些条件通常由于微细加工缺陷和器件的几何形状而常常难以收集。在本文中,我们介绍了一种能够使用单个压电谐振器产生模式定位的设备,该压电谐振器以闭环连接到实时模拟其他谐振器的硬件。它的主要优势是其完全可调性和对谐振器几何形状的适应性。

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