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Design and simulation of a piezoelectric sensor with applications in image stabilization

机译:压电传感器的设计与仿真及其在图像稳定中的应用

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The piezoelectric materials used in the device industry with a very high market share are piezoceramics. They are used in medicine, robotics, mechanics but not least and the image stabilization. This material is easy to handle and with good properties related to mechanical and electric response. In full development are micro-electro-mechanical systems (MEMS) that bring with them new features, but also as small size, so they can be integrated into almost any device on the market. In this paper a piezoelectric accelerometer has been designed and optimized by simulation studies regarding the material and geometry. Based on electric response as function of mechanical deformation, an optimized geometry has been proposed and investigated by numerical analysis using Comsol Multiphysics software package. The simulation results for this new configuration are discussed and compared to basic accelerometers design.
机译:在设备行业中具有很高市场份额的压电材料是压电陶瓷。它们用于医学,机器人技术,机械学,但并非最不重要的是和图像稳定。这种材料易于处理,并具有与机械和电响应有关的良好性能。微机电系统(MEMS)正在进行全面开发,它们不仅具有新功能,而且体积小巧,因此可以集成到市场上几乎所有设备中。本文通过对材料和几何形状的仿真研究,设计并优化了压电加速度计。基于电响应作为机械变形的函数,提出了一种优化的几何形状,并使用Comsol Multiphysics软件包进行了数值分析。讨论了这种新配置的仿真结果,并将其与基本加速度计设计进行了比较。

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