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Study on the Quadrature Error under Varying Ambient Pressure for a Bulk Micromachined Z-axis Gyroscope

机译:对散装微机械Z轴陀螺仪下变化环境压力下的正交误差研究

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This paper focused on the study of the quadrature error for a bulk micromachined gyroscope under varying pressure conditions between 150Pa and 100kPa. The source of the quadrature error and the non-ideal model of the micromachined gyroscope are presented with details. The change trend and characterization of pressure dependence were analyzed both analytically and experimentally in the custom-built installation. The results indicated that in order to meet high resolution and stabilization of the quadrature error, the optimal working pressure applied to the gyroscope must limit to a certain boundary condition. At last, some effective methods of restraining the quadrature error were put forward.
机译:本文重点研究了在150Pa和100kPa之间的不同压力条件下散装微机陀螺仪的正交误差的研究。微机械陀螺仪的正交误差源和微机器陀螺仪的非理想模型。在定制安装的安装中分析和实验地分析了压力依赖性的变化趋势和表征。结果表明,为了满足高分辨率和正交误差的稳定,施加到陀螺仪的最佳工作压力必须限制某个边界条件。最后,提出了一些限制正交误差的一些有效方法。

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