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New designs of micromachined vibrating rate gyroscopes with decoupled oscillation modes

机译:解耦振荡模式的微机械振动速率陀螺仪的​​新设计

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This paper reports on new vibrating comb-drive rate gyroscope designs featuring decoupling of the actuation and the detection mode Analytical calculations as well as FEM and system simulations are carried out. It is investigated how to overcome the main drawbacks of these sensors, which are especially the frequency mismatch of the two oscillation modes, the insufficient bandwidth and the effects of levitation. Concepts and simulations of electrostatically controlling both the resonance frequency and the bandwidth are presented. Within these concepts no mechanical balancing of the device is required and thus calibration costs are reduced. Simulations of a new quasi-rotating rate gyroscope show that a resolution of 0.1°s↑(-1) is possible at a bandwidth of 50 Hz with 6 mm↑(2) sensor area only, and that the effects of levitation are actually compensated. The design has been fabricated within the Bosch Foundry process. First measurements of the angular rate show a resolution of 0.5° s↑(-1) in a 50 Hz bandwidth. # 1998 Elsevier Science S.A. All rights reserved.
机译:本文报告了新的振动梳齿驱动速率陀螺仪设计,该设计具有致动和检测模式的解耦功能。进行了分析计算以及有限元分析和系统仿真。研究了如何克服这些传感器的主要缺点,特别是两个振荡模式的频率不匹配,带宽不足和悬浮效应。介绍了静电控制谐振频率和带宽的概念和仿真。在这些概念内,不需要设备的机械平衡,因此降低了校准成本。新型准旋转陀螺仪的仿真显示,仅在传感器区域为6 mm↑(2)的情况下,带宽为50 Hz时,分辨率为0.1°s↑(-1)是可能的,并且悬浮效应实际上得到了补偿。该设计是在Bosch Foundry流程中制造的。角速率的首次测量显示在50 Hz带宽内分辨率为0.5°s↑(-1)。 #1998 Elsevier Science S.A.保留所有权利。

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