Performance Enhancement of an Improved Design of 6-axis Single-Mass Piezoelectric IMU

H. Almabrouk, S. Kaziz, B. Mezghani, Fares Tounsi, Y. Bernard
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引用次数: 3

Abstract

In this paper, the performance of a new design of a piezoelectric Inertial Measurement Unit system (EMU) is evaluated through FEM simulations. This paper compares performance of a new proposed design with a previously reported one. The proposed sensor relies on Coriolis Effect for angular velocity detection and on direct piezoelectric Effect for acceleration measurements. This work addresses the detection improvement of both angular velocity and acceleration motions through a new proposed design. Compared to the reported design, the new structure produces an increase of 37.5% in the output voltage for a z-axis acceleration of 10 g. Similarly, for an angular velocity of 180 deg/s, an output voltage of 1 V is obtained from the new design compared to 200 mV from the reported one.
六轴单质量压电IMU改进设计的性能提升
本文通过有限元仿真对一种新型压电惯性测量单元系统的性能进行了评价。本文比较了新提出的设计与先前报道的设计的性能。该传感器利用科里奥利效应进行角速度检测,利用直接压电效应进行加速度测量。这项工作通过一种新的设计来解决角速度和加速度运动的检测改进。与报道的设计相比,当z轴加速度为10 g时,新结构的输出电压增加了37.5%。同样,对于180度/秒的角速度,新设计的输出电压为1 V,而现有设计的输出电压为200 mV。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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