Finite Element Simulations for Predicting Nonlinear Responses of Layered SAW Systems

被引:11
|
作者
Forster, Thomas [1 ]
Chauhan, Vikrant [2 ]
Mayer, Markus [2 ]
Mayer, Elena [3 ]
Mayer, Andreas [3 ]
Ebner, Thomas [2 ]
Wagner, Karl [2 ]
Hagelauer, Amelie [1 ]
机构
[1] Univ Bayreuth, Chair Commun Elect, Bayreuth, Germany
[2] RF360 Europe GmbH, Munich, Germany
[3] Offenburg Univ Appl Sci, Offenburg, Germany
关键词
D O I
10.1109/IUS52206.2021.9593732
中图分类号
O42 [声学];
学科分类号
070206 ; 082403 ;
摘要
Increasing power density causes increased self-generation of harmonics and intermodulation. As this leads to violations of the strict linearity requirements, especially for carrier aggregation (CA), the nonlinearity must be considered in the design process of RF devices. This raises the demand of accurate simulation models. Linear and nonlinear P-Matrix/COM models are used during the design due to their fast simulation times and accurate results. However, the finite element method (FEM) is useful to get a deeper insight in the device's nonlinearities, as the total field distributions can be visualized. The FE method requires complete sets of material tensors, which are unknown for most relevant materials in nonlinear micro-acoustics. In this work, we perform nonlinear FEM simulations, which allow the calculation of nonlinear field distributions of a lithium tantalate based layered SAW system up to third order. We aim at achieving good correspondence to measured data and determine the contributions of each material layer to the nonlinear signals. Therefore, we use approximations circumventing the issue of limited higher order tensor data. Experimental data for the third order nonlinearity is shown to validate the presented approach.
引用
收藏
页数:4
相关论文
共 50 条
  • [21] Finite Element Simulations of Brain Responses to Soccer-Heading Impacts
    Chen, P. Y.
    Chou, L. S.
    Hu, C. J.
    Chen, H. H.
    1ST GLOBAL CONFERENCE ON BIOMEDICAL ENGINEERING & 9TH ASIAN-PACIFIC CONFERENCE ON MEDICAL AND BIOLOGICAL ENGINEERING, 2015, 47 : 118 - +
  • [22] Finite Element Modellingand Simulations of Piezoelectric Actuators Responses with Uncertainty Quantification
    Vinh-Tan Nguyen
    Kumar, Pankaj
    Leong, Jason Yu Chuan
    COMPUTATION, 2018, 6 (04):
  • [23] FINITE-ELEMENT SIMULATIONS OF NONLINEAR FOCUSED ULTRASOUND IN BUBBLY LIQUIDS
    Tejedor Sastre, Maria Teresa
    Leblanc, Alexandre
    Lavie, Antoine
    Vanhille, Christian
    PROCEEDINGS OF THE 23RD INTERNATIONAL CONGRESS ON SOUND AND VIBRATION: FROM ANCIENT TO MODERN ACOUSTICS, 2016,
  • [24] Finite element method for solving nonlinear parabolic systems
    Farago, I.
    Computers & Mathematics with Applications, 1600, 21 (01):
  • [25] FINITE ELEMENT METHOD WITH SUPERCONVERGENCE FOR NONLINEAR HAMILTONIAN SYSTEMS
    Chen, Chuanmiao
    Tang, Qiong
    Ru, Shufang
    JOURNAL OF COMPUTATIONAL MATHEMATICS, 2011, 29 (02) : 167 - 184
  • [26] Computational modeling and simulations for predicting the nonlinear responses of reinforced concrete beams
    Pandimani, Pandimani
    MULTIDISCIPLINE MODELING IN MATERIALS AND STRUCTURES, 2023, 19 (04) : 728 - 747
  • [27] ASSESSING MOTORCYCLIST PROTECTION SYSTEMS USING FINITE ELEMENT SIMULATIONS
    Mantaras, D. A.
    Luque, P.
    INTERNATIONAL JOURNAL OF SIMULATION MODELLING, 2015, 14 (01) : 110 - 120
  • [28] Moving Finite Element Simulations for Reaction-Diffusion Systems
    Hu, Guanghui
    Qiao, Zhonghua
    Tang, Tao
    ADVANCES IN APPLIED MATHEMATICS AND MECHANICS, 2012, 4 (03) : 365 - 381
  • [29] Geometrically nonlinear finite element model for predicting failure in composite structures
    Patni, M.
    Minera, S.
    Bisagni, C.
    Weaver, P. M.
    Pirrera, A.
    COMPOSITE STRUCTURES, 2019, 225
  • [30] Finite-element analysis for simulation of layered SAW devices with XY LiNbO3 substrate
    Ippolito, SJ
    Kalantar-zadeh, K
    Wlodarski, W
    Powell, DA
    SMART STRUCTURES, DEVICES, AND SYSTEMS, 2002, 4935 : 120 - 131