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Consideration and implementation of inherent losses in SAW devices

机译:考虑和实施声表面波设备的固有损耗

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In the past decades, numerical simulation tools have been improved to allow more efficient designs of surface acoustic wave (SAW) devices. Indeed, many phenomena are now taken into account to most closely evaluate the behaviour of the system in real environment. In keeping with these previous works, this paper is devoted to the raising of three current approximations that lead to imprecisions in the computations. As a consequence, this study uses a physical model (Kelvin-Voigt internal damping) to take into account the internal behaviour of the material under stress or strain. Furthermore, losses related to the polarization of the material and to the residual conductivity in the piezoelectric are no more considered as null. After a software implementation of these phenomena, numerical simulations are conducted and calculation/test correlations are carried out.
机译:在过去的几十年中,已经改进了数值模拟工具,以允许更有效地设计声表面波(SAW)设备。实际上,现在已经考虑了许多现象,以最紧密地评估系统在实际环境中的行为。为了与这些先前的工作保持一致,本文致力于提出三种当前的近似值,从而导致计算的不确定性。因此,本研究使用物理模型(Kelvin-Voigt内部阻尼)来考虑材料在应力或应变下的内部行为。此外,与材料的极化和压电中的剩余电导率有关的损耗不再被认为是无效的。在对这些现象进行软件实现之后,将进行数值模拟并执行计算/测试相关性。

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