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Finite Element Simulation of Single Ultrasonic Transducer with Segmented Electrodes to Adjust the Directional Characteristic

机译:分段电极单个超声换能器调节方向特征的有限元模拟

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For many applications like level measurement and industry robotics it is of advantage if the directional characteristic of an ultrasonic transducer is changeable or adaptable for the improvement of spatial resolution. Often this goal is reached with the use of ultrasonic transducer arrays, which elements are driven with phase shifted excitation signals. One disadvantage of these solutions is the great effort for building such an array and the multi-channel sensor electronics. In this contribution the directional characteristic of a single air transducer with segmented electrodes is analyzed. Therefore a variable script based finite element model is used to discover the influence of different electrode configurations on the directional characteristic of a single piezoceramic transducer. Especially the influence on the angle of beam and the near field length are evaluated. The used variable model permits an optimization of the configuration with regards to the mentioned criteria. The findings will be used for the development of a level measurement system for bulk solids.
机译:对于液位测量和行业机器人等许多应用,如果超声波换能器的方向特性是可改变的或适用于改善空间分辨率的方向性,则有利。通常使用超声换能器阵列来达到这种目标,该元件通过相移激励信号驱动。这些解决方案的一个缺点是建立这种阵列和多通道传感器电子设备的巨大努力。在该贡献中,分析了具有分段电极的单个空气换能器的方向特性。因此,基于可变脚本的有限元模型用于发现不同电极配置对单个压电陶瓷换能器的方向特性的影响。特别是评估对光束角度和近场长度的影响。使用的变量模型允许在提到的标准方面优化配置。调查结果将用于开发用于散装固体的水平测量系统。

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