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Analyzing the Impact of Phase Errors in Quadrature Cancellation Techniques for MEMS Capacitive Gyroscopes

机译:MEMS电容陀螺仪正交抵消技术中相位误差的影响分析

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Quadrature error in MEMS capacitive gyroscopes can limit the overall sensor performance, therefore many techniques have been proposed to correct for it. These techniques include Synchronous demodulation, Open-loop and Closed-loop cancellation techniques. However, the effect of non-idealities on the effectiveness of these techniques was not reported. And since these techniques involve demodulation and modulation stages, phase errors can greatly impact the cancellation process, and consequently the gyro bias stability and bias over temperature specs. In this work, different quadrature cancellation techniques are presented and analyzed, and closed-form expressions for the effect of phase error on these techniques are derived, highlighting the effect of phase error due to modulation stage and how it can deteriorate the quadrature loop operation. In addition, simulation results verifying the analysis are presented.
机译:MEMS电容陀螺仪中的正交误差会限制传感器的整体性能,因此提出了许多技术来对其进行校正。这些技术包括同步解调,开环和闭环消除技术。但是,尚未报道非理想对这些技术的有效性的影响。而且,由于这些技术涉及解调和调制阶段,因此相位误差会极大地影响抵消过程,进而影响陀螺仪的偏置稳定性和整个温度范围内的偏置。在这项工作中,提出并分析了不同的正交消除技术,并推导了相位误差对这些技术的影响的闭式表达式,突出了由于调制级引起的相位误差的影响以及它如何使正交环路的工作性能恶化。此外,还提供了验证分析的仿真结果。

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